vix.ing · top · new · best · stats

Fast, low noise, megapixel detector and readout systems for future X-ray astronomy missions

2026/08/03 by Sven Herrmann, Peter Orel, Tanmoy Chattopadhyay +22
Physics and Astronomy · #astro-ph.IM #astro-ph.HE

paper · pdf

To appear in SPIE Astronomical Telescopes + Instrumentation 2026

arxiv created 2026/08/03 · arxiv updated 2026/08/05

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.

Citations