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Space telescopes / X-ray telescopes / Nuclear physics / Radioactivity / Radiation / Swift Gamma-Ray Burst Mission / Gamma spectroscopy / Cadmium telluride / Coded aperture / Physics / Spacecraft / Astronomy


Document Date: 2003-09-13 10:23:00


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Company

Los Alamos National Laboratory / International Gamma Ray Astrophysics Laboratory / /

Country

Norway / Japan / United States / /

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Facility

University of Saitama / University of Tokyo / University of Southampton / University of Maryland / NASA/Goddard Space Flight Center / /

IndustryTerm

manufacturing lot difference / mobility-lifetime products / energy range / low energy region / individual signal processing chains / low energy tail / electronics noise / satellite structure / readout electronics / energy spectrum / energy resolution / averaged electronics noise / imaging / energy response / ray µτ product / satellite structures / energy / energy band / readout chip / spectral and imaging response / µτ products / measured µτ products / coded mask aperture imaging / electron µτ product / image reconstruction software / coded aperture imaging instrument / processed using FFT image reconstruction software / /

Organization

University of Maryland / University of Tokyo / INTEGRAL mission / ASIC / Universities Space Research Association / National Aeronautics and Space Administration / Institute of Space and Astronautical Science / University of Southampton / University of Saitama / /

Person

Neil Gehrelsd / Tony Deanh / Kazuhiro Nakazawaa / Ed Fenimoreg / Scott Barthelmyd / Hans Krimmd / Makoto Tashirob / Craig Markwardtdf / Shin Watanabeac / Ann Parsonsd / Jack Tuellerd / Jay Cummingsde / David Palmerg / Derek Hullingerdf / Tadayuki Takahashia / Dave Willish / /

/

Position

author / /

ProvinceOrState

Maryland / /

Technology

semiconductor / 128-channel XA1 readout chip / X-ray / ASIC / spectroscopy / simulation / /

URL

http /

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