Characterization of Si Hybrid CMOS Detectors for use in the Soft X-ray Band
Zachary Prieskorn, Christopher V. Griffith, Stephen D. Bongiorno,, Abraham D. Falcone, David N. Burrows

TL;DR
This paper characterizes four hybrid CMOS X-ray detectors, analyzing noise, crosstalk, energy resolution, and dark current across temperatures, demonstrating significant improvements with a novel detector configuration.
Contribution
It introduces a new detector configuration that significantly reduces interpixel capacitive crosstalk in hybrid CMOS X-ray detectors.
Findings
Lowest read noise measured was 7.1 e- RMS.
H2RG detector achieved 1.8% IPC, a dramatic improvement.
Dark current at 150 K was 0.020 e- sec-1 pix-1.
Abstract
We report on the characterization of four Teledyne Imaging Systems HAWAII Hybrid Si CMOS detectors designed for X-ray detection. Three H1RG detectors were studied along with a specially configured H2RG. Read noise measurements were performed, with the lowest result being 7.1 e- RMS. Interpixel capacitive crosstalk (IPC) was measured for the three H1RGs and for the H2RG. The H1RGs had IPC upper limits of 4.0 - 5.5 % (up & down pixels) and 8.7 - 9.7 % (left & right pixels), indicating a clear asymmetry. Energy resolution is reported for two X-ray lines, 1.5 & 5.9 keV, at multiple temperatures between 150 - 210 K. The best resolution measured at 5.9 keV was 250 eV (4.2 %) at 150 K, with IPC contributing significantly to this measured energy distribution. The H2RG, with a unique configuration designed to decrease the capacitive coupling between ROIC pixels, had an IPC of 1.8 +/- 1.0 %…
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Taxonomy
TopicsParticle Detector Development and Performance · CCD and CMOS Imaging Sensors · Advanced Semiconductor Detectors and Materials
