The RHESSI Spectrometer

Issue Title: Topical Issue: The Reuven Ramaty High-Energy Solar Spectroscopic Imager (RHESSI) - Mission Description and Early Results RHESSI observes solar photons over three orders of magnitude in energy (3 keV to 17 MeV) with a single instrument: a set of nine cryogenically cooled coaxial germaniu...

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Veröffentlicht in:Solar physics 2002-11, Vol.210 (1-2), p.33-60
Hauptverfasser: Smith, Dm, Lin, Rp, Turin, P, Curtis, Dw, Primbsch, Jh, Campbell, Rd, Abiad, R, Schroeder, P, Cork, Cp, Hull, El, Landis, Da, Madden, Nw, Malone, D, Pehl, Rh, Raudorf, T, Sangsingkeow, P, Boyle, R, Banks, Is, Shirey, K, Schwartz, Richard
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Sprache:eng
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Zusammenfassung:Issue Title: Topical Issue: The Reuven Ramaty High-Energy Solar Spectroscopic Imager (RHESSI) - Mission Description and Early Results RHESSI observes solar photons over three orders of magnitude in energy (3 keV to 17 MeV) with a single instrument: a set of nine cryogenically cooled coaxial germanium detectors. With their extremely high energy resolution, RHESSI can resolve the line shape of every known solar gamma-ray line except the neutron capture line at 2.223 MeV. High resolution also allows clean separation of thermal and non-thermal hard X-rays and the accurate measurement of even extremely steep power-law spectra. Detector segmentation, fast signal processing, and two sets of movable attenuators allow RHESSI to make high-quality spectra and images of flares across seven orders of magnitude in intensity. Here we describe the configuration and operation of the RHESSI spectrometer, show early results on in-flight performance, and discuss the principles of spectroscopic data analysis used by the RHESSI software.[PUBLICATION ABSTRACT]
ISSN:0038-0938
1573-093X
DOI:10.1023/A:1022400716414