Fast, low noise, megapixel detector and readout systems for future X-ray astronomy missions
Sven Herrmann, Peter Orel, Tanmoy Chattopadhyay, Haley R. Stueber, Jill Juneau, Abigail Y. Pan, Kevan Donlon, Declan O'Neill, Gregory Prigozhin, Eric D. Miller, R. Glenn Morris, Tonya L. Peshel, Artem Poliszczuk, Beverly LaMarr, Catherine E. Grant, Christopher Leitz, Steven W. Allen, Sebastian Albrecht, Marshall W. Bautz, Michael Cooper, Ajay Dakshinamurthy, Matthew Heine, Anna Schweingruber, Keith Warner, Daniel Wilkins
astro-ph.IM, astro-ph.HE
Submitted: 2026-08-03
Comments: To appear in SPIE Astronomical Telescopes + Instrumentation 2026
License: http://creativecommons.org/licenses/by/4.0/
The gist: Next-generation strategic X-ray astronomy missions will require the simultaneous achievement of high angular resolution, large effective collecting area, and wide-field imaging with large-format
Terminology
Abstract
Next-generation strategic X-ray astronomy missions will require the simultaneous achievement of high angular resolution, large effective collecting area, and wide-field imaging with large-format focal plane detectors. Realizing the associated science objectives--ranging from precision measurements of bright point sources to the detection and characterization of faint diffuse emission-places stringent and, in some cases, competing requirements on detector performance. In particular, high frame rates are necessary to mitigate photon pile-up in observations of bright sources and to reduce contamination from particle-induced background in measurements of low surface brightness structures. At the same time, these instruments must preserve excellent soft X-ray response, which places tight constraints on read noise and on the fidelity of event characterization. State-of-the-art X-ray charge-coupled devices (CCDs) approach many of the key performance metrics required for these missions, but readout speed remains a primary limitation. Addressing this gap requires readout architectures that scale to high channel count, sustain high pixel throughput, and preserve the low-noise characteristics needed for soft X-ray sensitivity.
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