correlation between sunspot numbers and euv irradiance as observed by lyra on proba2

33
Correlation between sunspot numbers and EUV irradianc as observed by LYRA on PROBA2 Ingolf. E. Dammasch & Laure Lefevre, ROB SIDC Seminar, Brussels, 10 Jul 2013 LYRA the Large-Yield Radiometer onboard PROBA2

Upload: gyda

Post on 23-Feb-2016

40 views

Category:

Documents


0 download

DESCRIPTION

Correlation between sunspot numbers and EUV irradiance as observed by LYRA on PROBA2 Ingolf . E. Dammasch & Laure Lefevre, ROB. SIDC Seminar, Brussels, 10 Jul 2013. PROBA2. ESA’s “PRoject for On-Board Autonomy” Belgian microsatellite in Sun-synchronous orbit 725 km altitude - PowerPoint PPT Presentation

TRANSCRIPT

Page 1: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Correlation between sunspot numbers and EUV irradiance

as observed by LYRA on PROBA2

Ingolf. E. Dammasch & Laure Lefevre, ROB

SIDC Seminar, Brussels, 10 Jul 2013

LYRAthe Large-Yield Radiometer onboard PROBA2

Page 2: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

PROBA2

ESA’s “PRoject for On-Board Autonomy” Belgian microsatellite in Sun-synchronous orbit 725 km altitude Launched 02 Nov 2009 Nominal operations since March 2010 Technology and science mission 4 innovative instruments and 17 technological

experiments for in-orbit demonstration Among them the EUV imager SWAP and the

radiometer LYRA

Page 3: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

LYRA

“Large-Yield RAdiometer” 3 instrument units (redundancy) 4 spectral channels per head 3 types of detectors, Silicon + 2 types of diamond

detectors (MSM, PIN): radiation resistant, insensitive to visible light as compared to Si detectors

Page 4: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

LYRA Channels

Redundancy with different types of detectors: Channel 1 (Lyman-alpha) 120-123nm Channel 2 (Herzberg) 190-222nm Channel 3 (Aluminium) 17-80nm + <5nm Channel 4 (Zirconium) 6-20nm + <2nm

Page 5: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Instrument Artefacts

Data gaps Satellite rotations Occultations by Earth atmosphere Off-pointings Temperature variations Switch on/off

Page 6: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

GOES vs. LYRA Proxies

Manually select significant minimum per day Calculate proxy with simple linear formula

Page 7: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

3 ½ Years of Solar Development

(initially a by-product of the daily significant minimum)

Page 8: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

… also observed by SWAP and SDO/EVE

Page 9: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2
Page 10: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Another Instrument Artefact

Spectral degradation (drastic above 19nm): Channel 2-3 lost 93% of its initial response Channel 2-4 lost 44% of its initial response

Page 11: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Comparing

LYRA channel 2-3 LYRA channel 2-4 GOES 0.1-0.8nm Daily sunspot number

Page 12: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Comparing

LYRA channel 2-3 LYRA channel 2-4 GOES 0.1-0.8nm Daily sunspot number

Page 13: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Comparing

Another idea: Compare these… LYRA channel 2-3 LYRA channel 2-4 GOES 0.1-0.8nm Daily sunspot number … to flare indices

Page 14: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Comparing

Example: Maximum flare

strength and … LYRA channel 2-3 LYRA channel 2-4 GOES 0.1-0.8nm Daily sunspot number

Page 15: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

…now for Laure’s part…

Page 16: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

DATA U

SED GOES F10.7 (Penticton) CaIIK (SFO) Lyra4 Lyra3 TSI (Virgo / PMOD) Facular Area (SFO) Sunspot Area (SFO) Sunspot Numbers (from

SIDC)

Page 17: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Cross Correlations ISSN VS. all

Page 18: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Cross correlation Lyra3 vs. ISSN

Page 19: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Cross correlation Lyra4 vs. ISSN

Page 20: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2
Page 21: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Similarity map

Page 22: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Theoretical temperature

components of Lyra

channels 3 and 4

Page 23: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

WHERE DOES WHAT COME FROM ?

Vernazza et al., 1981

CORONA

CHROMOSPHERE PHOTOSPHERELyra 4 Lyra

3

Page 24: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Now what does this mean ?

GOES F10.7

HeI CaIIK MgII Lyman α

TSI Facular Area Sunspot Area

CORONATRANS.

CHROM.

PHOTOS.

Soft X-rays

EUV

Visible

Dudok de Wit, T. (2007)

Lyra 4 ?Lyra 3 ?

Page 25: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2
Page 26: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Shorter timescales (< 81 days)

Page 27: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

TIME

2010

2011

2012-2013

Page 28: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Longer timescales (> 81 days)

Page 29: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

Now

what about the

long-term evolution

of the instrument ?

TIME

2010

2011

2012-2013

Page 30: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

THE BEGINNING

Page 31: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2
Page 32: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

TIME

2010

2011

2012-2013

Page 33: Correlation between  sunspot numbers and EUV irradiance as observed by LYRA on PROBA2

n : number of variablesm : time length

gives n different axesS gives the amount of variance

F107

Coordinates of F107 on all n axes

R i

Singular Value Decomposition : How does it work ?