motivation theoretical predictions experimental requirements and setup

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T. A dachi,P.von B rentano ,D .Frekers,D .D e Frenne ,H .Fujita , Y.Fujita , A .H eger, E.Jacobs, Y.K alm ykov ,K .Langanke ,E.K olbe , A .N egret,P.von N eum ann-Cosel, L.Popescu ,S.Rakers, A .Richter, A .Shevchenko und Y.Shim bara 2 3 4 5 6 2 7 5 1 8 9 5 1 5 4 1 1 2 1 2 3 4 5 6 7 8 9 TU D arm stadt— O saka U niversity — U niversitätzu K öln — UniversitätM ünster U niversiteitGent— U niversity ofW itw atersrand — Los A lam os — GSI— U niversitätBasel A natoliy B yelikov Institut für Kernphysik, Technische Universität Darmstadt N eutrino N ucleosynthesis ofE xotic N uclides La and Ta 138 180

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Outline. Motivation Theoretical predictions Experimental requirements and setup Results vs. RPA calculations Summary and outlook. Exotic Nuclides. Nucleosynthesis of 138 La. s-process. r-process. p-process. Production through Neutrino Process. - PowerPoint PPT Presentation

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Page 1: Motivation    Theoretical predictions    Experimental requirements and setup

T. Adachi , P. von Brentano , D. Frekers , D. De Frenne , H. Fujita , Y. Fujita , A. Heger ,E. Jacobs , Y. Kalmykov , K. Langanke , E. Kolbe , A. Negret , P. von Neumann-Cosel ,

L. Popescu , S. Rakers , A. Richter , A. Shevchenko und Y. Shimbara

2 3 4 5 6 2 7

5 1 8 9 5 1

5 4 1 1 2

1 2 3 4

5 6 7 8 9TU Darmstadt — Osaka University — Universität zu Köln — Universität Münster

Universiteit Gent — University of Witwatersrand — Los Alamos — GSI — Universität Basel

Anatoliy ByelikovInstitut für Kernphysik, Technische Universität Darmstadt

Neutrino Nucleosynthesis of ExoticNuclides La and Ta138 180

Page 2: Motivation    Theoretical predictions    Experimental requirements and setup

Motivation

Theoretical predictions

Experimental requirements and setup

Results vs. RPA calculations

Summary and outlook

Outline

Page 3: Motivation    Theoretical predictions    Experimental requirements and setup

180Ta

138La

Exotic Nuclides

Page 4: Motivation    Theoretical predictions    Experimental requirements and setup

Nucleosynthesis of 138La

s-process r-process p-process

Page 5: Motivation    Theoretical predictions    Experimental requirements and setup

Production through Neutrino Process

Neutral current reactions: 139La(,‘n)138La 181Ta(,‘n)180Ta

Charged current reactions: 138Ba(e,e)138La 180Hf(e,e)180Ta

Complete stellar evolution in massive stars with the improved RPA calculations for -nucleus reactions

A. Heger et al., Phys. Lett. B 606 (2005) 258

Page 6: Motivation    Theoretical predictions    Experimental requirements and setup

138La: pure process nucleus

Different Production Processes of 138La

180Ta: 50% p process, 50% process (s process also not excluded)

Page 7: Motivation    Theoretical predictions    Experimental requirements and setup

Prediction

Low neutrino energies small q l = 0 GT strength RPA predicts main GT resonance well above neutron threshold

Page 8: Motivation    Theoretical predictions    Experimental requirements and setup

Experimental Requirements

(e,e) Gamow-Teller strength (p,n) or (3He,t)

Gamow-Teller part Narrow angle cut around 0°

Simple one step reaction mechanism Intermediate energies

Page 9: Motivation    Theoretical predictions    Experimental requirements and setup

Experimental Facility at RCNP

Page 10: Motivation    Theoretical predictions    Experimental requirements and setup

Grand Raiden

Page 11: Motivation    Theoretical predictions    Experimental requirements and setup

138La Spectrum

Target: 138BaCO4 embedded in polyvinylalcohol

Page 12: Motivation    Theoretical predictions    Experimental requirements and setup

B(GT) extraction

B(GT))(0JNK)σ(02

στστ

Page 13: Motivation    Theoretical predictions    Experimental requirements and setup

GT Strength Distribution in 138La

Page 14: Motivation    Theoretical predictions    Experimental requirements and setup

Comparison Experiment/RPA

B(GT–)exp 64% B(GT–)th at 7.47 MeV

Page 15: Motivation    Theoretical predictions    Experimental requirements and setup

180Ta Spectrum

Target: 180TaO2 embedded in polyvinylalcohol

Page 16: Motivation    Theoretical predictions    Experimental requirements and setup

GT Strength Distribution in 180Ta

Page 17: Motivation    Theoretical predictions    Experimental requirements and setup

Summary and Outlook

Analysis of 138La and 180Ta data completed

Good agreement found for 138La

Comparison with the theory for 180Ta underway

Integration into network calculations underway

Page 18: Motivation    Theoretical predictions    Experimental requirements and setup

PVA Spectrum

Page 19: Motivation    Theoretical predictions    Experimental requirements and setup

Nucleon-Nucleon Interaction: Ein Dependence at q = 0

Page 20: Motivation    Theoretical predictions    Experimental requirements and setup

Production of 180Ta

Page 21: Motivation    Theoretical predictions    Experimental requirements and setup

R2 Value

Page 22: Motivation    Theoretical predictions    Experimental requirements and setup

High Resolution WS Course

Page 23: Motivation    Theoretical predictions    Experimental requirements and setup

Conversion to B(GT)

Page 24: Motivation    Theoretical predictions    Experimental requirements and setup