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Rupak Mahapatra – Curriculum Vitae Mitchell Institute for Fundamental Physics & Astronomy E-mail: [email protected] Texas A&M University Phone: (979) 229-4196 College Station, TX 77843-4242 Web: http://faculty.physics.tamu.edu/mahapatra/ Research Interests Direct searches for dark matter: Cryogenic Dark Matter Search (CDMS/SuperCDMS) Development of ton-scale cryogenic semiconductor (Ge/Si) detector technology using my fully dedicated semiconductor detector fabrication facility for significantly faster, cheaper and better detectors. Developed a unique and strong program at TAMU (evolved to 4 PIs now) with wide ranging expertise in detector R&D, cryogenics techniques, simulations, experiment building and analysis techniques, that could quickly address changing scientific and technological challenges in the field. Only one of the 2 centers (Stanford/SLAC being the other one) making the cryogenic detectors for the SuperCDMS SNOLAB experiment. Improvement in background reduction/rejection techniques for ultra-low threshold detectors that include both novel active background rejecting detectors and analysis techniques. Development of experiment in Coherent Neutrino Scattering (MINER) using Ultra-low Threshold Detectors Have developed an experiment, Mitchell Institute Neutrino Experiment at Reactor (MINER), that will leverage our ultra-low threshold detector technology, efficient fabrication techniques and cryogenic technologies to search for BSM physics using multitude of experimental approaches and infrastructure, such as underground labs in SNOLAB and a MW nuclear reactor at Texas A&M. Application of particle detector technology and techniques to Medical Imaging Exploring use of particle detector technology and analysis techniques to the field of Medical Imaging, especially in the development of low cost imaging devices. Promising ideas and initial results in strip-PET scanner. Education Ph. D. University of Minnesota, Dec 2000 HEP Experiment on CLEO e + e - Collider Thesis: Measurement of the Mass, Full Width and -Width of the c Meson using the CLEO B. S. Indian Institute of Technology, 1993 Chemical Engineering Employment and Experience Associate Professor in Physics Texas A&M University 2013-Current Assistant Professor in Physics Texas A&M University 2008 – 2013 Project Scientist UC Santa Barbara 2007-2008 Postdoctoral Researcher UC Santa Barbara 2001-2006 Honors, Awards and Major Funding 2015 DOE Base Funding (PI) SuperCDMS Program at Texas A&M $1,675K 2015 NSF Project Funding through UC Berkeley SuperCDMS SNOLAB $708K 09-14 Various DOE and NSF funding > $2.5 million 2009 Received large donation (> $3 million) of an entire 6 inch semiconductor fab line – Through presentations, negotiations and family connection, received an entire industrial quality fab line donated for installation at TAMU 2010 DOE Early Career Award – Funded to establish a fabrication facility suited for a ton-scale Germanium experiment. Title: “Ton-scale Ge: Beyond Zepto-barn WIMP Cross-section” 2012 Adjunct Faculty at Saha Institute of Nuclear Physics (SINP), Calcutta - In recognition of contributions to development of large underground lab in India and planning of a ton-scale experiment by end of decade 2016 Honorary Faculty at National Institute of Science and Education Research (NISER), India In recognition of involving them in SuperCDMS and collaborating on the long term growth of a dark matter program in India 2016 Elected Spokesperson of the MINER coherent neutrino scattering experiment – In recognition of providing leadership for the collaboration consisting of ~60 members from 10 universities in 4 countries.

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Page 1: mahapatra full cv - TAMU Physics & Astronomy · 2019-10-22 · Title: Microsoft Word - mahapatra_full_cv Author: Rupak Created Date: 10/25/2016 9:58:39 PM

Rupak Mahapatra – Curriculum Vitae

Mitchell Institute for Fundamental Physics & Astronomy E-mail: [email protected] Texas A&M University Phone: (979) 229-4196 College Station, TX 77843-4242 Web: http://faculty.physics.tamu.edu/mahapatra/

Research Interests

Direct searches for dark matter: Cryogenic Dark Matter Search (CDMS/SuperCDMS) Development of ton-scale cryogenic semiconductor (Ge/Si) detector technology using my fully dedicated

semiconductor detector fabrication facility for significantly faster, cheaper and better detectors. Developed a unique and strong program at TAMU (evolved to 4 PIs now) with wide ranging expertise in detector R&D, cryogenics techniques, simulations, experiment building and analysis techniques, that could quickly address changing scientific and technological challenges in the field. Only one of the 2 centers (Stanford/SLAC being the other one) making the cryogenic detectors for the SuperCDMS SNOLAB experiment.

Improvement in background reduction/rejection techniques for ultra-low threshold detectors that include both novel active background rejecting detectors and analysis techniques.

Development of experiment in Coherent Neutrino Scattering (MINER) using Ultra-low Threshold Detectors Have developed an experiment, Mitchell Institute Neutrino Experiment at Reactor (MINER), that will leverage our

ultra-low threshold detector technology, efficient fabrication techniques and cryogenic technologies to search for BSM physics using multitude of experimental approaches and infrastructure, such as underground labs in SNOLAB and a MW nuclear reactor at Texas A&M.

Application of particle detector technology and techniques to Medical Imaging Exploring use of particle detector technology and analysis techniques to the field of Medical Imaging, especially in

the development of low cost imaging devices. Promising ideas and initial results in strip-PET scanner.

Education

Ph. D. University of Minnesota, Dec 2000 HEP Experiment on CLEO e+e- Collider Thesis: Measurement of the Mass, Full Width and -Width of the c Meson using the CLEO B. S. Indian Institute of Technology, 1993 Chemical Engineering

Employment and Experience

Associate Professor in Physics Texas A&M University 2013-Current Assistant Professor in Physics Texas A&M University 2008 – 2013 Project Scientist UC Santa Barbara 2007-2008 Postdoctoral Researcher UC Santa Barbara 2001-2006

Honors, Awards and Major Funding

2015 DOE Base Funding (PI) SuperCDMS Program at Texas A&M $1,675K 2015 NSF Project Funding through UC Berkeley SuperCDMS SNOLAB $708K 09-14 Various DOE and NSF funding > $2.5 million 2009 Received large donation (> $3 million) of an entire 6 inch semiconductor fab line – Through presentations,

negotiations and family connection, received an entire industrial quality fab line donated for installation at TAMU 2010 DOE Early Career Award – Funded to establish a fabrication facility suited for a ton-scale Germanium experiment.

Title: “Ton-scale Ge: Beyond Zepto-barn WIMP Cross-section” 2012 Adjunct Faculty at Saha Institute of Nuclear Physics (SINP), Calcutta - In recognition of contributions to

development of large underground lab in India and planning of a ton-scale experiment by end of decade 2016 Honorary Faculty at National Institute of Science and Education Research (NISER), India – In recognition of

involving them in SuperCDMS and collaborating on the long term growth of a dark matter program in India 2016 Elected Spokesperson of the MINER coherent neutrino scattering experiment – In recognition of providing

leadership for the collaboration consisting of ~60 members from 10 universities in 4 countries.

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Rupak Mahapatra – Curriculum Vitae

Teaching

Physics 218 Fall 09, F10, F11, F12, F13, Spring 15, S16, F16 Freshman mechanics Physics 327 Spring 12, 13, 14, 15, 16 Experiments in Physics Physics 627 Spring 2009 Graduate particle physics

Advisees

Postdoctoral: Dr. Joel Sander (Ph. D. UC Santa Barbara) Jan 2010 – June 2013 Tenure-track Assistant Professor at Univ. of South Dakota since 2013 Dr. Andy Kubik (Ph. D. Northwestern Univ) April 2015 – Current

Research Scientist: Dr. Andrew Jastram (Ph. D. Texas A&M Univ) Dec 2016- Current

Dr. Charles Hays (Ph. D. UT Austin) July 2015- June 2016 Engineer/Tech: Mark Platt (BS in Electronics and Electrical Engg), July 2009 – Current Joseph Garvie (BS in Physics), May 2015 - Current Graduate: William Baker (3rd Yr, Undergraduate from Texas A&M)

Richard Beck (3rd Yr, Undergraduate from UC Berkeley) Zachary Wetzel (3rd Yr, Undergraduate from Texas Luthern) Himangshu Neog (1st Yr, Undergraduate from NISER, India)

Past graduates: Dr. Kunj Prasad: Graduated with a Ph. D. in 2013 Dr. Andrew Jastram: Graduate with a Ph. D. in 2015

Kristopher Koch (MS in 2012) Arun Aryasomayajula (MS in 2013) Undergraduate Students Advised: More than 2 dozen students, with half dozen senior theses done or in progress.

Committee Membership, Scientific Service, etc

DOE Comparative Review Panel Member for Triennial Cosmic Frontier Review of DOE Labs in DC in July 2016 Chosen by DOE to be a panel member reviewing the DOE labs research program in Cosmic Frontier for the next 3 years of funding. Labs include FNAL, SLCA, LBNL, BNL, ANL, LANL, LLNL, PNNL. Provided technical review of various research programs at various labs and how effective they were by themselves and in comparison with other labs.

Co-convener of the 2015 CPAD workshop on New Technologies for Discovery at UT Arlington This conference will evaluate the detector R&D program being carried out in support of the HEP science mission, especially in support of the science drivers identified as high priority by the P5 panel.

Chair of the Texas APS Conference in Fall 2014 This Fall conference brings together scientists and students engaged in research and education. Organized mini-workshop on Beyond Standard Model Physics at the Mitchell Institute, College Station, Nov 2014

This workshop brought together experimentalists and theorists working in the Cosmic Frontier to brainstorm experimental possibilities in dark matter and neutrino physics, using synergistic technology and physics drivers.

Faculty supervisor the large machine shop and electronics shop The machine shop with 3 machinists and electronics shop with 3 electronics/electrical engineer/techs provided essential services to support the research and teaching missions of the PIs and the dept.

PI on the CDMS, SuperCDMS and GEODM collaborations Ge detectors using Transition Edge Sensor (TES) technology has dominated dark matter direct searches. The next generation experiments will have dramatically higher search sensitivity with bigger, better and cheaper detectors.

CDMS Analysis Coordinator Served as the Analysis Coordinator for the entire collaboration from 2007 till 2009, leading various analysis efforts. DAQ Systems Manager

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Rupak Mahapatra – Curriculum Vitae

Served as the Data Acquisition System Manager for the CDMSII collaboration from 2002-2008, leading development of an entirely new system of fully remote controlled and much faster DAQ system.

Colloquium Organizer Served as an organizing member of the TAMU Physics colloquium committee for multiple years.

DOE CAREER Proposal Review Selected to serve as a reviewer for the DOE Early Career Proposals for 2011. NSF/DOE supported US Dark Matter Strategy Committee Active participant and contributor to discussions with DOE and NSF for the evolution of dark matter strategy in US. Adviser to India’s Underground Science Efforts in Neutrino and Dark Matter

Strong involvement in development of a large underground lab in India to host neutrino and dark matter projects.

Recent Conferences and Workshops

Invited plenary talk at the Mitchell Institute Dark Matter and Neutrino Workshop, May 2016 Invited plenary talk at the Saha Institute of Nuclear Physics workshop on Dark Matter, Dec 2015 Invited plenary talk at the Particle Physics and Cosmology conference, South Dakota, June 2015 Invited plenary talk at the Berkeley Workshop on Dark Matter Detection, LBNL, June 2015 Invited plenary talk at the Particle Physics and Cosmology conference, Mexico, June 2014

Outreach Activities

Include High School Students in Research I have included highly interested local high school students in some aspects of Physics research and/or development of Physics demos. My group had hosted 2 students in summer 2013 and 2 students in summer 2015.

Saturday Morning Physics Present talks in TAMU Saturday Morning Physics for high school students and their parents/teachers, with talks focusing on simplified description of latest research topics, followed by quizzes and hands on experiments

Lab Tours Tour of our multiple fabrication labs, exposing them to latest research equipments and the Physics we do with them

Publications

More than 170 publications as part of the CDMS and CLEO collaborations, and through smaller projects (list attached).

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Rupak Mahapatra – Curriculum Vitae

Papers by Rupak Mahapatra

1. Projected Sensitivity of the SuperCDMS SNOLAB experiment By SuperCDMS Collaboration (R. Agnese et al.). arXiv:1610.00006 Submitted to: Phys.Rev.D.

2. “Background Studies for the MINER Coherent Neutrino Scattering Reactor Experiment” By MINER Collaboration (G. Agnolet et al.). arXiv:1609.02066

3. “Sensitivity to oscillation with a sterile fourth generation neutrino from ultra-low threshold neutrino-nucleus coherent scattering”

B. Dutta, Y. Gao, R. Mahapatra, N. Mirabolfathi, L. E. Strigari and J. W. Walker. Accepted by Phys. Rev. D. arXiv:1511.02834

4. “Toward Single Electron Resolution Phonon Mediated Ionization Detectors” N. Mirabolfathi, H. R. Harris, R. Mahapatra, K. Sundqvist, A. Jastram, B. Serfass, D. Faiez and B. Sadoulet arXiv:1510.00999. Submitted to Nucl. Inst. Meth.

5. “New Results from the Search for Low-Mass Weakly Interacting Massive Particles with the CDMS Low Ionization Threshold Experiment” R. Agnese et al. [SuperCDMS Collaboration].

Phys. Rev. Lett. 116, no. 7, 071301 (2016)

6. “Sensitivity to Z-prime and nonstandard neutrino interactions from ultralow threshold neutrino-nucleus coherent scattering”

B. Dutta, R. Mahapatra, L. E. Strigari and J. W. Walker. Phys. Rev. D 93, no. 1, 013015 (2016)

7. “Improved WIMP-search reach of the CDMS II germanium data” R. Agnese et al. [SuperCDMS Collaboration]. Phys. Rev. D 92, no. 7, 072003 (2015)

8. “Dark matter effective field theory scattering in direct detection experiments” K. Schneck et al. [SuperCDMS Collaboration].

Phys. Rev. D 91, no. 9, 092004 (2015)

9. “Maximum Likelihood Analysis of Low Energy CDMS II Germanium Data” R. Agnese et al. [SuperCDMS Collaboration]. Phys. Rev. D, [Phys. Rev. D 91, 052021 (2015)]

10. “First direct limits on Lightly Ionizing Particles with electric charge less than e/6” R. Agnese et al. [CDMS Collaboration].

Phys. Rev. Lett. 114, no. 11, 111302 (2015)

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Rupak Mahapatra – Curriculum Vitae

11. “Cryogenic Dark Matter Search Detector Fabrication Process and Recent Improvements” A. Jastram, H. R. Harris, R. Mahapatra, J. Phillips, M. Platt, K. Prasad, J. Sander and S. Upadhyayula.

Nucl. Instrum. Meth. A 772, 14 (2015), Erratum: [Nucl. Instrum. Meth. A 820, 172 (2016)]

12. “Search for Low-Mass Weakly Interacting Massive Particles with SuperCDMS” R. Agnese et al. [SuperCDMS Collaboration].

Phys. Rev. Lett. 112, no. 24, 241302 (2014)

13. “Search for Low-Mass Weakly Interacting Massive Particles Using Voltage-Assisted Calorimetric Ionization Detection in the SuperCDMS Experiment” R. Agnese et al. [SuperCDMS Collaboration].

Phys. Rev. Lett. 112, no. 4, 041302 (2014) FERMILAB-PUB-13-572-AE

14. “Demonstration of Surface Electron Rejection with Interleaved Germanium Detectors for Dark Matter Searches” R. Agnese et al. [SuperCDMS Soudan Collaboration]. Appl. Phys. Lett. 103, 164105 (2013) FERMILAB-PUB-13-571-AE

15. “Silicon Detector Dark Matter Results from the Final Exposure of CDMS II” R. Agnese et al. [CDMS Collaboration]. Phys. Rev. Lett. 111, no. 25, 251301 (2013)

16. “Silicon detector results from the first five-tower run of CDMS II” R. Agnese et al. [CDMS Collaboration].

Phys. Rev. D 88, 031104 (2013), Erratum: [Phys. Rev. D 88, no. 5, 059901 (2013)] FERMILAB-PUB-13-105-AE-E

17. “Search for annual modulation in low-energy CDMS-II data” Z. Ahmed et al. [CDMS-II Collaboration].

arXiv:1203.1309 [astro-ph.CO] FERMILAB-PUB-12-102-AE

18. “SuperCDMS status from Soudan and plans for SNOLab” J. Sander et al.. AIP Conf. Proc. 1534, 129 (2012).

19. “Review of dark matter direct detection experiments” R. Mahapatra. Pramana 79, 1045 (2012).

20. “The CDMS II data acquisition system” D. A. Bauer et al. [CDMS-II Collaboration]. Nucl. Instrum. Meth. A 638, 127 (2011). FERMILAB-PUB-11-302-AE

21. “Combined Limits on WIMPs from the CDMS and EDELWEISS Experiments” Z. Ahmed et al. [CDMS and EDELWEISS Collaborations].

Phys. Rev. D 84, 011102 (2011)

22. “Search for inelastic dark matter with the CDMS II experiment” Z. Ahmed et al. [CDMS-II and CDMS Collaborations].

Phys. Rev. D 83, 112002 (2011)

23. “Results from a Low-Energy Analysis of the CDMS II Germanium Data” Z. Ahmed et al. [CDMS-II Collaboration].

Phys. Rev. Lett. 106, 131302 (2011)

24. “Solid xenon project” D. N. Balakishiyeva, R. Mahapatra and T. Saab.

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Rupak Mahapatra – Curriculum Vitae

AIP Conf. Proc. 1274, 138 (2010).

25. “A low-threshold analysis of CDMS shallow-site data” D. S. Akerib et al. [CDMS Collaboration]. Phys. Rev. D 82, 122004 (2010)

26. “Dark Matter Search Results from the CDMS II Experiment” Z. Ahmed et al. [CDMS-II Collaboration].

Science 327, 1619 (2010)

27. “Analysis of the low-energy electron-recoil spectrum of the CDMS experiment” Z. Ahmed et al. [CDMS Collaboration].

Phys. Rev. D 81, 042002 (2010) FERMILAB-PUB-09-340-E

28. “Search for Axions with the CDMS Experiment” Z. Ahmed et al. [CDMS Collaboration]. Phys. Rev. Lett. 103, 141802 (2009)

29. “The cryogenic dark matter search (CDMS): Present status and future” P. L. Brink et al.. AIP Conf. Proc. 1182, 260 (2009).

30. “Search for Weakly Interacting Massive Particles with the First Five-Tower Data from the Cryogenic Dark Matter Search at the Soudan Underground Laboratory” Z. Ahmed et al. [CDMS Collaboration]. Phys. Rev. Lett. 102, 011301 (2009)

31. “Surface Event Rejection Using Phonon Information in CDMS” D. S. Akerib et al. [CDMS-II Collaboration].

Nucl. Phys. Proc. Suppl. 173, 137 (2007).

32. “CDMS, Supersymmetry and Extra Dimensions” D. S. Akerib et al. [CDMS Collaboration]. astro-ph/0609189

Nucl. Phys. Proc. Suppl. 173, 95 (2007)

33. “The SuperCDMS proposal for dark matter detection” D. S. Akerib et al.. Nucl. Instrum. Meth. A 559, 411 (2006).

34. “Limits on WIMP - Nucleon Interactions from the Cryogenic Dark Matter Search at the Soudan Underground Laboratory” D. S. Akerib et al. [CDMS-II Collaboration]. Nucl. Instrum. Meth. A 559, 390 (2006). FERMILAB-CONF-06-578-A

35. “Characterization, performance, and future advanced analysis of detectors in the cryogenic dark matter search (CDMS-II)” D. S. Akerib et al..

Nucl. Instrum. Meth. A 559, 387 (2006).

36. “Latest results from the CDMS-II cold dark matter search” P. L. Brink et al.. AIP Conf. Proc. 850, 1617 (2006). FERMILAB-CONF-06-581

37. “Limits on spin-dependent wimp-nucleon interactions from the cryogenic dark matter search” D. S. Akerib et al. [CDMS Collaboration]. Phys. Rev. D 73, 011102 (2006)

38. “Limits on spin-independent wimp-nucleon interactions from the two-tower run of the cryogenic dark matter search” D. S. Akerib et al. [CDMS Collaboration].

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Rupak Mahapatra – Curriculum Vitae

Phys. Rev. Lett. 96, 011302 (2006)

39. “Exclusion limits on the WIMP-nucleon cross section from the first run of the Cryogenic Dark Matter Search in the Soudan Underground Laboratory” D. S. Akerib et al. [CDMS Collaboration]. Phys. Rev. D 72, 052009 (2005)

40. “The SuperCDMS Experiment” R. W. Schnee et al. [SuperCDMS Collaboration]. astro-ph/0502435. FERMILAB-CONF-05-025-E

41. “Progress of CDMS-II at the Soudan Mine” I. R.W.Ogburn et al. [CDMS II Collaboration]. eConf C 041213, 2512 (2004).

TSRA-2004-2512, FERMILAB-CONF-04-567-PPD

42. “Installation and commissioning of the CDMSII experiment at Soudan” D. S. Akerib et al.. Nucl. Instrum. Meth. A 520, 116 (2004).

43. “Further results from the CDMS experiment” D. S. Akerib et al.. Nucl. Instrum. Meth. A 520, 105 (2004).

44. “First results from the cryogenic dark matter search at Soudan” R. Mahapatra [CDMS Collaboration]. Conference proceeding. FERMILAB-PUB-04-168-A

45. “First results from the cryogenic dark matter search in the Soudan Underground Lab” D. S. Akerib et al. [CDMS Collaboration].

Phys. Rev. Lett. 93, 211301 (2004)

46. “Beyond the CDMS-II dark matter search: SuperCDMS” P. L. Brink et al. [CDMS-II Collaboration]. eConf C 041213, 2529 (2004) FERMILAB-CONF-05-475-E, FERMILAB-CONF-05-056-E, TSRA-2004-2529

47. “Observation of eta-prime(c) production in gamma gamma fusion at CLEO” D. M. Asner et al. [CLEO Collaboration].

hep-ex/0312058 Phys. Rev. Lett. 92, 142001 (2004)

48. “New results from the cryogenic dark matter search experiment” D. S. Akerib et al. [CDMS Collaboration]. hep-ex/0306001

Phys. Rev. D 68, 082002 (2003) FERMILAB-PUB-03-276

49. “Determination of the anti-B o D* l anti-nu decay width and —V(cb)—” N. E. Adam et al. [CLEO Collaboration].

Phys. Rev. D 67, 032001 (2003) CLNS-01-1774, CLEO-01-27

50. “Performance and background measurements of the CDMS II tower I detectors at the Stanford Underground Facility” T. Saab et al. Conference proceeding

51. “WIMP exclusion results from the CDMS experiment” P. L. Brink et al. Conference proceeding

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Rupak Mahapatra – Curriculum Vitae

52. “Search for neutrinoless tau decays involving the K0(S) meson” S. Chen et al. [CLEO

Collaboration]. hep-ex/0208019 Phys. Rev. D 66, 071101 (2002) CLNS-02-1795, CLEO-02-12

53. “Observation of the decay Omega0(c) o Omega- e+ nu(e)” R. Ammar et al. [CLEO Collaboration]. Phys. Rev. Lett. 89, 171803 (2002) CLNS-02-1782, CLEO-02-05

54. “Dalitz analysis of D0 o K0(S) pi+ pi-” H. Muramatsu et al. [CLEO Collaboration]. Phys. Rev. Lett. 89, 251802 (2002), Erratum: [Phys. Rev. Lett. 90, 059901 (2003)] CLNS-02-1792, CLEO-02-10

55. “Preliminary results on —V(ub)— from inclusive semileptonic B decays with neutrino reconstruction” A. Bornheim et al. [CLEO Collaboration].

hep-ex/0207064. CLEO-CONF-02-08

56. “Study of two photon transistions in CLEO-III Upsilon (3S) data” D. Cinabro et al. [CLEO Collaboration]. hep-ex/0207062. CLEO-CONF-02-07, ICHEP-02-ABS-949

57. “First observation of Upsilon (1D) states” S. E. Csorna et al. [CLEO Collaboration]. hep-ex/0207060 CLEO-CONF-02-06, ICHEP-02-ABS-948

58. “Search for eta(b)(1S) in inclusive radiative decays of the Upsilon(3S)” A. H. Mahmood et al. [CLEO Collaboration].

CLEO-CONF-02-05, ICHEP-02-ABS-947

59. “Measurements of inclusive B →ψ production” S. Anderson et al. [CLEO Collaboration]. hep-ex/0207059

Phys. Rev. Lett. 89, 282001 (2002) CLNS-02-1785, CLEO-02-06

60. “Measurement of the lepton energy in the decay anti-B o X l anti-nu and determination of the heavy quark expansion parameters” R. A. Briere et al. [CLEO Collaboration].

hep-ex/0209024. CLEO-CONF-02-10

61. “Measurement of exclusive B decays to final states containing a charmed baryon” S. A. Dytman et al. [CLEO Collaboration].

Phys. Rev. D 66, 091101 (2002) CLNS-02-1793, CLEO-02-11

62. “Measurement of B(B- o D0 pi-) and B(anti-B0 o D+ pi-) and isospin analysis of B o D pi decays”

S. Ahmed et al. [CLEO Collaboration]. Phys. Rev. D 66, 031101 (2002) CLNS-02-1788, CLEO-02-8

63. “Observation of B o K0(S) pi+ pi- and evidence for B o K*+- pi-+” E. Eckhart et al. [CLEO Collaboration]. hep-ex/0206024 Phys. Rev. Lett. 89, 251801 (2002) CLNS-02-1789, CLEO-02-9

64. “Correlated inclusive Lambda anti-Lambda production in e+ e- annihilations at s**(1/2) approximately 10.5-GeV” Z. Metreveli et al. [CLEO Collaboration].

Phys. Rev. D 66, 052002 (2002) CLNS-02-1787, CLEO-02-07

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Rupak Mahapatra – Curriculum Vitae

65. “Anti-search for the glueball candidate f(J)(2220) in two -photon interactions” K. Benslama et al. [CLEO Collaboration]. hep-ex/0204019

Phys. Rev. D 66, 077101 (2002) CLNS-02-1780, CLEO-02-03

66. “Search for lepton flavor violating decays of B mesons” K. W. Edwards et al. [CLEO Collaboration]. Phys. Rev. D 65, 111102 (2002) CLNS-02-1781, CLEO-02-4

67. “Improved measurement of —V(cb)— using anti-B o D* l nu decays” R. A. Briere et al. [CLEO Collaboration]. Phys. Rev. Lett. 89, 081803 (2002) CLNS-01-1773, CLEO-01-26

68. “Measurement of the D+ o anti-K*0 l+ letpon-neutrino branching fraction” G. Brandenburg et al. [CLEO Collaboration].

Phys. Rev. Lett. 89, 222001 (2002) CLNS-02-1776, CLEO-02-02

69. “Measurement of the ratio of branching fractions of the Upsilon(4S) to charged and neutral B mesons” S. B. Athar et al. [CLEO Collaboration]. hep-ex/0202033

Phys. Rev. D 66, 052003 (2002) CLNS-02-1775, CLEO-02-01

70. “Improved measurement of —V(ub)— with inclusive semileptonic B decays” A. Bornheim et al. [CLEO Collaboration].

Phys. Rev. Lett. 88, 231803 (2002) CLNS-01-1767, CLEO-01-23

71. “Further experimental studies of two-body radiative Upsilon decays” G. Masek et al. [CLEO Collaboration].

Phys. Rev. D 65, 072002 (2002) CLNS-01-1769, CLEO-01-24

72. “Observation of exclusive anti-B o D(*) K*- decays” R. Mahapatra et al. [CLEO Collaboration]. Phys. Rev. Lett. 88, 101803 (2002) CLNS-01-1772, CLEO-01-25

73. “Search for CP violation in tau o K pi tau-neutrino decays” G. Bonvicini et al. [CLEO Collaboration]. Phys. Rev. Lett. 88, 111803 (2002) CLNS-01-1766, CLEO-01-22

74. “Lifetime differences, direct CP violation and partial widths in D0 meson decays to K+ K- and pi+ pi-” S. E. Csorna et al. [CLEO Collaboration].

Phys. Rev. D 65, 092001 (2002) CLNS-01-1763, CLEO-01-21

75. “Measurement of the masses and widths of the Sigma++(c) and Sigma0(c) charmed baryons” M. Artuso et al. [CLEO Collaboration]. hep-ex/0110071 Phys. Rev. D 65, 071101 (2002) CLNS-01-1759, CLEO-01-19

76. “Measurement of the Xi+(c) lifetime” A. H. Mahmood et al. [CLEO Collaboration]. Phys. Rev. D 65, 031102 (2002) CLNS-01-1761, CLEO-01-20

77. “Observation of anti-B0 o D0 pi0 and anti-B0 o D*0 pi0” T. E. Coan et al. [CLEO Collaboration]. Phys. Rev. Lett. 88, 062001 (2002) CLNS-01-1755, CLEO-01-18

78. “First measurement of Gamma(D*+) and precision measurement of m(D*+) - m(D0)” A. Anastassov et al. [CLEO Collaboration]. hep-ex/0108043 Phys. Rev. D 65, 032003 (2002) CLNS-01-1741, CLEO-01-13

79. “Hadronic mass moments in inclusive semileptonic B meson decays” D. Cronin-Hennessy et al. [CLEO Collaboration].

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Rupak Mahapatra – Curriculum Vitae

Phys. Rev. Lett. 87, 251808 (2001) CLNS-01-1752, CLEO-01-17

80. “Branching fraction and photon energy spectrum for b→sγ” S. Chen et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 251807 (2001) CLNS-01-1751, CLEO-01-16

81. “Evidence for the decay D0 o K* pi- pi+ pi-” S. A. Dytman et al. [CLEO Collaboration]. Phys. Rev. D 64, 111101 (2001) CLNS-01-1748

82. “First measurement of Gamma(D*+)” S. Ahmed et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 251801 (2001) CLNS-01-1740

83. “Measurement of the Xi(c)+ lifetime” M. Artuso et al. [CLEO Collaboration]. hep-ex/0107040, CLEO-CONF-01-03

84. “Search for the decay Upsilon(1s) o gamma eta-prime” S. J. Richichi et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 141801 (2001) CLNS-01-1744, CLEO-01-14

85. “Improved upper limits on the FCNC decays B →K`+`− and B → K*(892) `+`−” S. Anderson et al. [CLEO Collaboration]. hep-ex/0106060 Phys. Rev. Lett. 87, 181803 (2001) CLNS-01-1739, CLEO-01-11

86. “Search for the familon via B+- o pi+- X0, B+- o K+- X0, and B0 o K0(S)X0 decays” R. Ammar et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 271801 (2001) CLNS-01-1736

87. “First observation of anti-B0 o D*0 pi+ pi+ pi- pi- decays” K. W. Edwards et al. [CLEO Collaboration].

Phys. Rev. D 65, 012002 (2002) CLNS-01-1735, CLEO-01-09

88. “Rate measurement of D0 o K+ pi- pi0 and constraints on D0 - anti-D0 mixing” G. Brandenburg et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 071802 (2001) CLNS-01-1731, CLEO-01-07

89. “Experimental investigation of the two photon widths of the chi(c0) and the chi(c2) mesons” B. I. Eisenstein et al. [CLEO Collaboration]. Phys. Rev. Lett. 87, 061801 (2001) CLNS-01-1732, CLEO-01-08

90. “Search for CP violation in tau o pi pi0 nu(tau) decay” P. Avery et al. [CLEO Collaboration]. Phys. Rev. D 64, 092005 (2001) CLNS-01-1730, CLEO-01-06

91. “Search for B0 →π0π0 decay” D. M. Asner et al. [CLEO Collaboration].

Phys. Rev. D 65, 031103 (2002) CLNS-01-1718, CLEO-01-02

92. “First observation of anti-B o D(*) rho-prime-, rho-prime- o omega pi-” J. P. Alexander et al. [CLEO Collaboration].

Phys. Rev. D 64, 092001 (2001)

93. “First measurement of Gamma (D*+)” T. E. Coan et al. [CLEO Collaboration]. hep-ex/0102007. CLEO-CONF-01-2

94. “Mixing and CP violation in the decay of neutral D mesons at CLEO” D. Cronin-Hennessy et al. [CLEO Collaboration].

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Rupak Mahapatra – Curriculum Vitae

hep-ex/0102006. CLEO-CONF-01-1

95. “Search for the decay B+ o D*+ K0(S)” A. Gritsan et al. [CLEO Collaboration]. Phys. Rev. D 64, 077501 (2001) CLNS-01-1720, CLEO-01-04

96. “Correlated Lambda+(c) anti-Lambda-(c) production in e+ e- annihilations at s**(1/2) = 10.5-GeV” A. Bornheim et al. [CLEO Collaboration].

Phys. Rev. D 63, 112003 (2001) CLNS-00-1709, CLEO-00-28

97. “Observation of B o phi K and B o phi K*” R. A. Briere et al. [CLEO Collaboration]. hep-ex/0101032 Phys. Rev. Lett. 86, 3718 (2001) CLNS-01-1719, CLEO-01-03

98. “A Search for charmless B o V V decays” R. Godang et al. [CLEO Collaboration]. hep-ex/0101029 Phys. Rev. Lett. 88, 021802 (2002) CLNS-00-1705, CLEO-00-26

99. “Bounds on the CP asymmetry in like sign dileptons from B0B¯0 meson decays” D. E. Jaffe et al.

[CLEO Collaboration]. Phys. Rev. Lett. 86, 5000 (2001). CLNS-01-1717, CLEO-01-01

100. “Search for CP violation in D0 →KS0π0 and D0 →π0π0 and D0 →KS0KS0 decays”

G. Bonvicini et al. [CLEO Collaboration]. Phys. Rev. D 63, 071101 (2001) CLNS-00-1708, CLEO-00-27

101. “Evidence of new states decaying into Xi-prime(c) pi” S. E. Csorna et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 4243 (2001)

102. “A Measurement of the decay asymmetry parameters in Xi0(c) o Xi- pi+” S. Chan et al. [CLEO Collaboration].

Phys. Rev. D 63, 111102 (2001)

103. “Dalitz analysis of the decay D0 o K- pi+ pi0” S. Kopp et al. [CLEO Collaboration]. hep-ex/0011065 Phys. Rev. D 63, 092001 (2001) CLNS-00-1700, CLEO-00-23

104. “Measurement of the Lambda+(c) lifetime” A. H. Mahmood et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 2232 (2001)

105. “Bounds on the CP asymmetry in b→sγ decays” T. E. Coan et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 5661 (2001)

106. “Search for a scalar bottom quark with mass 3.5-GeV - 4.5-GeV/c**2” V. Savinov et al. [CLEO Collaboration].

Phys. Rev. D 63, 051101 (2001)

107. “Study of B →ψ2SK and B →ψ2S K*(892) decays” S. J. Richichi et al. [CLEO Collaboration]. Phys. Rev. D 63, 031103 (2001)

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Rupak Mahapatra – Curriculum Vitae

108. “Observation of the Omega0(c) charmed baryon at CLEO” D. Cronin-Hennessy et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 3730 (2001)

109. “Study of tau decays to six pions and neutrino” A. Anastassov et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 4467 (2001)

SLAC-REPRINT-2000-074, CLNS-00-1687, CLEO-00-16

110. “Observation of new states decaying into Lambda+(c) pi- pi+” M. Artuso et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 4479 (2001)

111. “Study of chi(c1) and chi(c2) meson production in B meson decays” S. Chen et al. [CLEO Collaboration]. Phys. Rev. D 63, 031102 (2001)

112. “Search for direct CP violation in cascade hyperon decay” D. E. Jaffe et al. [CLEO Collaboration]. hep-ex/0009037. SLAC-REPRINT-2000-092, CLNS-98-1587, CLEO-98-16

113. “First observation of the decays B0 o D*- p anti-p pi+ and B0 o D*-p anti-n” S. Anderson et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 2732 (2001)

114. “Observation of B o K+- pi0 and B o K0 pi0, and evidence for B o pi+ pi-” D. Cronin-Hennessy et al. [CLEO Collaboration]. Phys. Rev. Lett. 85, 515 (2000)

115. “Measurements of B o D(*)(S)+ D+(*) branching fractions” S. Ahmed et al. [CLEO Collaboration]. Phys. Rev. D 62, 112003 (2000)

116. “A Search for B o tau nu” T. E. Browder et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 2950 (2001)

117. “Determination of the B o D* l nu decay width and —V(cb)—” J. P. Alexander et al. [CLEO Collaboration].

hep-ex/0007052. SLAC-REPRINT-2000-070

118. “Evidence of new states decaying into Xi-prime(c) pi” P. Avery et al. [CLEO Collaboration]. hep-ex/0007050. SLAC-REPRINT-2000-069

119. “Observation of new states decaying into Lambda(c)+ pi- pi+” P. Avery et al. [CLEO Collaboration]. hep-ex/0007049. SLAC-REPRINT-2000-068, CLEO-CONF-00-2, ICHEP-00-862

120. “Observation of the Omega 0(c) charmed baryon at CLEO” S. Ahmed et al. [CLEO Collaboration]. Int. J. Mod. Phys. A 16S1B, 505 (2001)

121. “Study of (chi(c1) ) and (chi(c2) ) meson production in B meson decays” G. Brandenburg et al. [CLEO Collaboration].

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Rupak Mahapatra – Curriculum Vitae

hep-ex/0007046. SLAC-REPRINT-2000-066, CLEO-CONF-00-6, ICHEP-00-552

122. “Search for decays of B0 mesons into pairs of leptons: B0 → e+e−, B0 → muon+ muonand B0 →e±

muon-+” T. Bergfeld et al. [CLEO Collaboration].

Phys. Rev. D 62, 091102 (2000)

123. “First observation of the Sigma*+(c) baryon and a new measurement of the Sigma+(c) mass” R. Ammar et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 1167 (2001)

124. “Study of B decays to charmonium states B o eta(c) K and B o chi(c0) K” K. W. Edwards et al. [CLEO Collaboration].

Phys. Rev. Lett. 86, 30 (2001)

125. “Measurements of the mass, total width and two photon partial width of the eta(c) meson” G. Brandenburg et al. [CLEO Collaboration]. Phys. Rev. Lett. 85, 3095 (2000)

126. “B o D* pi+ pi- pi- pi0, D(*) omega pi- and the observation of a wide 1- omega pienhancement at 1418-MeV” M. Artuso et al. [CLEO Collaboration].

hep-ex/0006018. SLAC-REPRINT-2000-091, CLEO-CONF-00-1

127. “Study of charmless hadronic B meson decays to pseudoscalar vector final states” C. P. Jessop et al. [CLEO Collaboration]. Phys. Rev. Lett. 85, 2881 (2000)

128. “Measurement of the relative branching fraction of upsilon(4S) to charged and neutral B meson pairs”

J. P. Alexander et al. [CLEO Collaboration]. Phys. Rev. Lett. 86, 2737 (2001)

129. “Precise measurement of b0 - anti-B0 mixing parameters at the upsilon(4S)” B. H. Behrens et al. [CLEO Collaboration].

Phys. Lett. B 490, 36 (2000)

130. “Study of exclusive two-body B0 meson decays to charmonium” P. Avery et al. [CLEO Collaboration].

Phys. Rev. D 62, 051101 (2000)

131. “Measurements of charm fragmentation into D*+(s) and D+(s) in e+ e- annihilations at S**(1/2) = 10.5-GeV” R. A. Briere et al. [CLEO Collaboration]. Phys. Rev. D 62, 072003 (2000)

132. “Resonance structure of tau- o K- pi+ pi- nu(tau) decays” D. M. Asner et al. [CLEO Collaboration]. Phys. Rev. D 62, 072006 (2000)

133. “Measurement of B(Lambda+(c) o p K- pi+)” D. E. Jaffe et al. [CLEO Collaboration]. Phys. Rev. D 62, 072005 (2000)

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Rupak Mahapatra – Curriculum Vitae

134. “Measurement of the product branching fraction b(c o theta(c) X) B(theta(c) o Lambda X)” R. Ammar et al. [CLEO Collaboration]. Phys. Rev. D 62, 092007 (2000)

135. “Search for CP violation in B± →J/ψK± and B± →ψ2SK± decays” G. Bonvicini et al. [CLEO Collaboration].

Phys. Rev. Lett. 84, 5940 (2000)

136. “Study of the decays B0 →D∗ + D∗ −” E. D. Lipeles et al. [CLEO Collaboration].

Phys. Rev. D 62, 032005 (2000)

137. “Measurement of the B0 and B+ meson masses from B0 o psi(psi-prime) K0(s) and B+ o psi(psi-prime) K+ decays” S. E. Csorna et al. [CLEO Collaboration

Phys. Rev. D 61, 111101 (2000)

138. “Study of two-body B decays to kaons and pions: Observation of B o pi+ pi-, B o K+pi0, and B o K0 pi0 decays” D. Cronin-Hennessy et al. [CLEO Collaboration]. hep-ex/0001010, SLAC-REPRINT-2000-081, CLNS-99-1650, CLEO-99-18

139. “Measurement of charge asymmetries in charmless hadronic in b meson decays” S. Chen et al. [CLEO Collaboration].

Phys. Rev. Lett. 85, 525 (2000)

140. “Measurements of the mass, total width and two photon partial width of the eta(c) meson” R. K. Mahapatra. CORNELL-LEPP-THESIS-00-4, UMI-99-91432

141. “Two-body B meson decays to eta and eta-prime: Observation of B o eta K*” S. J. Richichi et al.

[CLEO Collaboration]. Phys. Rev. Lett. 85, 520 (2000)

142. “Study of exclusive radiative B meson decays” T. E. Coan et al. [CLEO Collaboration]. Phys. Rev. Lett. 84, 5283 (2000)

143. “Search for D0 - anti-D0 mixing” R. Godang et al. [CLEO Collaboration]. Phys. Rev. Lett. 84, 5038 (2000)

144. “Search for the decay anti-B0 o D*0 gamma” M. Artuso et al. [CLEO Collaboration]. hep-ex/0001002 Phys. Rev. Lett. 84, 4292 (2000)

145. “Update of the search for the neutrinoless decay tau o muon gamma” S. Ahmed et al. [CLEO Collaboration].

Phys. Rev. D 61, 071101 (2000)

146. “Hadronic structure in the decay tau- o pi- pi0 neutrino(tau)” S. Anderson et al. [CLEO Collaboration]. hep-ex/9910046

Phys. Rev. D 61, 112002 (2000)

147. “Observation of radiative leptonic decay of the tau lepton” T. Bergfeld et al. [CLEO Collaboration]. Phys. Rev. Lett. 84, 830 (2000)

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Rupak Mahapatra – Curriculum Vitae

148. “Search for D0 - anti-D0 mixing” M. Artuso et al. [CLEO Collaboration]. hep-ex/9908040, SLAC-REPRINT-1999-114, CLEO-CONF-99-17

149. “Study of charmless hadronic B decays into the final states K pi, pi pi, and K K, with the first observation of B o pi+ pi- and B o K0 pi0” Y. Kwon et al. [CLEO Collaboration].

hep-ex/9908039, SLAC-REPRINT-1999-113, CLEO-CONF-99-14

150. “Structure functions in the decay tau-+ o pi-+ pi0 pi0 neutrino(tau)” T. E. Browder et al. [CLEO Collaboration].

Phys. Rev. D 61, 052004 (2000)

151. “Measurement of charge asymmetries in charmless hadronic B decay” T. E. Coan et al. [CLEO Collaboration].

hep-ex/9908029, SLAC-REPRINT-1999-111, CLEO-CONF-99-16

152. “Update of the search for the neutrinoless decay tau o muon gamma” A. Anastassov et al. [CLEO Collaboration]. hep-ex/9908025, SLAC-REPRINT-1999-110, CLEO-CONF-99-11

153. “Resonant structure of tau o three pi pi0 neutrino(tau) and tau o omega pi neutrino(tau) decays” K. W. Edwards et al. [CLEO Collaboration].

Phys. Rev. D 61, 072003 (2000)

154. “b o s gamma branching fraction and CP asymmetry” S. Ahmed et al. [CLEO Collaboration]. hep-ex/9908022, SLAC-REPRINT-1999-108, CLEO-CONF-99-10

155. “Two-body B meson decays to eta and eta-prime: Observation of B o eta K*” S. J. Richichi et al. [CLEO Collaboration]. hep-ex/9908019, SLAC-REPRINT-1999-107, CLEO-CONF-99-12

156. “Charmless hadronic B decays to exclusive final states with a K*, rho, omega, or phi meson” C. P. Jessop et al. [CLEO Collaboration]. hep-ex/9908018, SLAC-REPRINT-1999-106, CLEO-CONF-99-13

157. “First observation of the decay B o J / psi phi K” C. P. Jessop et al. [CLEO Collaboration]. Phys. Rev. Lett. 84, 1393 (2000)

158. “Observation of a broad L = 1 c anti-q state in B- o D*+ pi- pi- at CLEO” S. Anderson et al. [CLEO Collaboration]. Nucl. Phys. A 663, 647 (2000)

159. “Charged track multiplicity in B meson decay” G. Brandenburg et al. [CLEO Collaboration]. Phys. Rev. D 61, 072002 (2000)

160. “Observation of radiative leptonic decay of the tau lepton” T. Bergfeld et al. [CLEO Collaboration]. hep-ex/9907056, SLAC-REPRINT-1999-102, CLEO-CONF-99-4

161. “Rare decays of the eta-prime” R. A. Briere et al. [CLEO Collaboration]. Phys. Rev. Lett. 84, 26 (2000)

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Rupak Mahapatra – Curriculum Vitae

162. “Limit on tau-neutrino mass from tau- o pi- pi+ pi- pi0 tau-neutrino” M. Athanas et al. [CLEO Collaboration].

Phys. Rev. D 61, 052002 (2000)

163. “Evidence of new states decaying into Xi(c)* pi” J. P. Alexander et al. [CLEO Collaboration]. Phys. Rev. Lett. 83, 3390 (1999)

164. “Measurement of B o rho lepton neutrino decay and —V(ub)—” B. H. Behrens et al. [CLEO Collaboration].

Phys. Rev. D 61, 052001 (2000)

165. “Hadronic structure in the decay tau- o tau-neutrino pi- pi0 pi0 and the sign of the tau-neutrino helicity” D. M. Asner et al. [CLEO Collaboration].

Phys. Rev. D 61, 012002 (2000)

166. “Measurement of charm meson lifetimes” G. Bonvicini et al. [CLEO Collaboration]. Phys. Rev. Lett. 82, 4586 (1999)

167. “Search for baryon and lepton number violating decays of the tau lepton” R. Godang et al. [CLEO Collaboration].

Phys. Rev. D 59, 091303 (1999)

168. “Measurement of the B o D lepton neutrino branching fractions and form-factor” J. E. Bartelt et al. [CLEO Collaboration]. Phys. Rev. Lett. 82, 3746 (1999)

169. “First observation of the decay B0 o D*+ D*-” M. Artuso et al. [CLEO Collaboration]. Phys. Rev. Lett. 82, 3020 (1999)

170. “Search for exclusive rare baryonic decays of B mesons” T. E. Coan et al. [CLEO Collaboration]. Phys. Rev. D 59, 111101 (1999)

171. “Observation of two narrow states decaying into xi+(c) gamma and xi0(c) gamma” C. P. Jessop et al. [CLEO Collaboration]. Phys. Rev. Lett. 82, 492 (1999)

172. “Study of three prong hadronic tau decays with charged kaons” S. J. Richichi et al. [CLEO Collaboration].

Phys. Rev. D 60, 112002 (1999)

173. “First observation of the decay tau- o K*- eta tau-neutrino” M. Bishai et al. [CLEO Collaboration]. Phys. Rev. Lett. 82, 281 (1999)

174. “Upsilon dipion transitions at energies near the upsilon(4S)” S. Glenn et al. [CLEO Collaboration]. Phys. Rev. D 59, 052003 (1999)

175. “First observation of upsilon(1S) o gamma pi pi” A. Anastassov et al. [CLEO Collaboration].

Phys. Rev. Lett. 82, 286 (1999)