Design, development, and commissioning of a flexible test setup for the AXIS prototype detector

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Pan, Abigail Y., Stueber, Haley R., Chattopadhyay, Tanmoy, Allen, Steven W., Bautz, Marshall W., Donlon, Kevan, Grant, Catherine E., Hermann, Sven, LaMarr, Beverly, Malonis, Andrew, Miller, Eric D., Morris, Glenn, Orel, Peter, Poliszczuk, Artem, Prigozhin, Gregory, Wilkins, Dan
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866908495355314176
author Pan, Abigail Y.
Stueber, Haley R.
Chattopadhyay, Tanmoy
Allen, Steven W.
Bautz, Marshall W.
Donlon, Kevan
Grant, Catherine E.
Hermann, Sven
LaMarr, Beverly
Malonis, Andrew
Miller, Eric D.
Morris, Glenn
Orel, Peter
Poliszczuk, Artem
Prigozhin, Gregory
Wilkins, Dan
author_facet Pan, Abigail Y.
Stueber, Haley R.
Chattopadhyay, Tanmoy
Allen, Steven W.
Bautz, Marshall W.
Donlon, Kevan
Grant, Catherine E.
Hermann, Sven
LaMarr, Beverly
Malonis, Andrew
Miller, Eric D.
Morris, Glenn
Orel, Peter
Poliszczuk, Artem
Prigozhin, Gregory
Wilkins, Dan
contents The Advanced X-ray Imaging Satellite (AXIS) is one of two candidate mission concepts selected for Phase-A study for the new NASA Astrophysics Probe Explorer (APEX) mission class, with a planned launch in 2032. The X-ray camera for AXIS is under joint development by the X-ray Astronomy and Observational Cosmology (XOC) Group at Stanford, the MIT Kavli Institute (MKI), and MIT Lincoln Laboratory (MIT-LL). To accelerate development efforts and meet the AXIS mission requirements, XOC has developed a twin beamline testing system, capable of providing the necessary performance, flexibility, and robustness. We present design details, simulations, and performance results for the newer of the two beamlines, constructed and optimized to test and characterize the first full-size MIT-LL AXIS prototype detectors, operating with the Stanford-developed Multi-Channel Readout Chip (MCRC) integrated readout electronics system. The XOC X-ray beamline design is forward-looking and flexible, with a modular structure adaptable to a wide range of detector technologies identified by the Great Observatories Maturation Program (GOMAP) that span the X-ray to near-infrared wavelengths.
format Preprint
id arxiv_https___arxiv_org_abs_2508_14177
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Design, development, and commissioning of a flexible test setup for the AXIS prototype detector
Pan, Abigail Y.
Stueber, Haley R.
Chattopadhyay, Tanmoy
Allen, Steven W.
Bautz, Marshall W.
Donlon, Kevan
Grant, Catherine E.
Hermann, Sven
LaMarr, Beverly
Malonis, Andrew
Miller, Eric D.
Morris, Glenn
Orel, Peter
Poliszczuk, Artem
Prigozhin, Gregory
Wilkins, Dan
Instrumentation and Methods for Astrophysics
The Advanced X-ray Imaging Satellite (AXIS) is one of two candidate mission concepts selected for Phase-A study for the new NASA Astrophysics Probe Explorer (APEX) mission class, with a planned launch in 2032. The X-ray camera for AXIS is under joint development by the X-ray Astronomy and Observational Cosmology (XOC) Group at Stanford, the MIT Kavli Institute (MKI), and MIT Lincoln Laboratory (MIT-LL). To accelerate development efforts and meet the AXIS mission requirements, XOC has developed a twin beamline testing system, capable of providing the necessary performance, flexibility, and robustness. We present design details, simulations, and performance results for the newer of the two beamlines, constructed and optimized to test and characterize the first full-size MIT-LL AXIS prototype detectors, operating with the Stanford-developed Multi-Channel Readout Chip (MCRC) integrated readout electronics system. The XOC X-ray beamline design is forward-looking and flexible, with a modular structure adaptable to a wide range of detector technologies identified by the Great Observatories Maturation Program (GOMAP) that span the X-ray to near-infrared wavelengths.
title Design, development, and commissioning of a flexible test setup for the AXIS prototype detector
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2508.14177