X-ray response evaluation in subpixel level for X-ray SOI pixel detectors
Kousuke Negishi, Takayoshi Kohmura, Kouichi Hagino, Taku Kogiso, Kenji, Oono, Keigo Yarita, Akinori Sasaki, Koki Tamasawa, Takeshi G. Tsuru, Takaaki, Tanaka, Hideaki Matsumura, Katsuhiro Tachibana, Hideki Hayashi, Sodai Harada,, Koji Mori, Ayaki Takeda, Yusuke Nishioka

TL;DR
This paper evaluates the subpixel-level X-ray response of SOI pixel detectors, demonstrating improved uniformity and efficiency in soft X-ray detection through new device development and detailed response analysis.
Contribution
It presents the first detailed subpixel response evaluation of XRPIX detectors, showing improvements in detection efficiency and uniformity at the subpixel level.
Findings
Confirmed high detection efficiency down to 2.6 keV.
Demonstrated uniformity of detection efficiency, gain, and energy resolution at subpixel scale.
Improved variation in relative detection efficiency compared to previous reports.
Abstract
We have been developing event-driven SOI Pixel Detectors, named `XRPIX' (X-Ray soiPIXel) based on the silicon-on-insulator (SOI) pixel technology, for the future X-ray astronomical satellite with wide band coverage from 0.5 keV to 40 keV. XRPIX has event trigger output function at each pixel to acquire a good time resolution of a few and has Correlated Double Sampling function to reduce electric noises. The good time resolution enables the XRPIX to reduce Non X-ray Background in the high energy band above 10\,keV drastically by using anti-coincidence technique with active shield counters surrounding XRPIX. In order to increase the soft X-ray sensitivity, it is necessary to make the dead layer on the X-ray incident surface as thin as possible. Since XRPIX1b, which is a device at the initial stage of development, is a front-illuminated (FI) type of XRPIX, low energy X-ray…
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