Paper
13 December 2000 In-orbit calibration activities of the XMM-Newton EPIC cameras
David H. Lumb, Philippe Gondoin, Martin J. L. Turner, Anthony F. Abbey, Paul J. Bennie, Steve Sembay, G. J. Griffiths, Philippe Ferrando, Jean Luc Sauvageot, Elena Belsole, Claude Pigot, Ulrich G. Briel, Konrad Dennerl, Frank Haberl, Gisela D. Hartner, Eckhard Kendziorra, Marcus Kirsch, Markus Kuster, Silvano Molendi, Gabriele E. Villa, Andrea Tiengo, A. Lagostina, E. Serpell
Author Affiliations +
Abstract
The combined effective area of the three EPIC cameras of the XMM-Newton Observatory, offers the greatest collecting power ever deployed in an X-ray imaging system. The resulting potential for high sensitivity, broad-band spectroscopic investigations demands an accurate calibration. This work summarizes the initial in-orbit calibration activities that address these requirements. We highlight the first steps towards effective area determination, which includes the maintenance of gain CTI calibration to allow accurate energy determination. We discuss observations concerning the timing and count-rate capabilities of the detectors. Finally we note some performance implications of the optical blocking filters.
© (2000) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
David H. Lumb, Philippe Gondoin, Martin J. L. Turner, Anthony F. Abbey, Paul J. Bennie, Steve Sembay, G. J. Griffiths, Philippe Ferrando, Jean Luc Sauvageot, Elena Belsole, Claude Pigot, Ulrich G. Briel, Konrad Dennerl, Frank Haberl, Gisela D. Hartner, Eckhard Kendziorra, Marcus Kirsch, Markus Kuster, Silvano Molendi, Gabriele E. Villa, Andrea Tiengo, A. Lagostina, and E. Serpell "In-orbit calibration activities of the XMM-Newton EPIC cameras", Proc. SPIE 4140, X-Ray and Gamma-Ray Instrumentation for Astronomy XI, (13 December 2000); https://doi.org/10.1117/12.409123
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Cited by 11 scholarly publications.
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KEYWORDS
Calibration

Cameras

Molybdenum

Optical filters

Charge-coupled devices

X-rays

Data modeling

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