DocumentCode
595694
Title
Optical imaging detector for solar corona intensity oscillations study
Author
Shah, Devavrat ; Chatterjee, Avhishek ; Banerjee, Adrish ; Aggarwal, J. ; Patel, Jatin ; Patel, Ishan
Author_Institution
Sensor Focal Plane Syst. Div., ISRO, Ahmedabad, India
fYear
2012
fDate
18-21 Dec. 2012
Firstpage
470
Lastpage
475
Abstract
Intensity of the solar corona is million times fainter than that of the photosphere in the visible wavelengths. The solar corona can be observed either during occurrences of total solar eclipses when the bright photospheric light is blocked by moon or by using an instrument called the `coronagraph´. The existence of waves in the solar corona creates high frequency intensity, velocity and/ or line-width oscillations. These are interesting objectives for scientific community involved in research on solar physics. Amplitudes of these oscillations are feeble and need to be detected under high background photon flux. Photon noise generated by the background flux is significantly higher compared to peak signals generated by intensity oscillations. Identification of appropriate imaging detector and detection methodology to detect low amplitude oscillations overriding on high background flux is important for the design of coronagraph instrument. This paper discusses developed test setup to simulate intensity oscillations, with proposed detection methodology and also describes results of study carried out on two candidate imaging detector arrays.
Keywords
astronomical image processing; astronomical instruments; image sensors; solar corona; solar pulsations; bright photospheric light; detection methodology; high background photon flux; imaging detector arrays; low amplitude oscillation; optical imaging detector; photon noise; solar corona intensity oscillations study; solar physics; CMOS integrated circuits; Charge coupled devices; Detectors; Noise; Oscillators; Photonics; Signal detection; ADC; APS; Binning; CCD; Conversion Gain; Dynamic Range (DR); EFL; FFT; FOV; QE;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensing Technology (ICST), 2012 Sixth International Conference on
Conference_Location
Kolkata
ISSN
2156-8065
Print_ISBN
978-1-4673-2246-1
Type
conf
DOI
10.1109/ICSensT.2012.6461724
Filename
6461724
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