Vertically stacked amorphous selenium based VUV photodetectors for use in liquid noble detectors

Fuente: arXiv
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Main Authors: Tzoka, Iakovos, Rooks, M., Ishida, A. C. A., Barajas, A., Chirayath, V. A., Asaadi, J.
Format: Preprint
Published: 2024
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author Tzoka, Iakovos
Rooks, M.
Ishida, A. C. A.
Barajas, A.
Chirayath, V. A.
Asaadi, J.
author_facet Tzoka, Iakovos
Rooks, M.
Ishida, A. C. A.
Barajas, A.
Chirayath, V. A.
Asaadi, J.
contents We present results from the characterization of a vertically stacked amorphous selenium (aSe)-based photodetector for use in cryogenic environments. aSe has been identified as an ideal photoconductor that can efficiently convert vacuum ultraviolet (VUV) light to charges even at cryogenic temperatures. We have designed and fabricated an aSe device in vertical geometry with top and bottom metal electrodes that produces an electric field perpendicular to the substrate. The top-metal contact has an open design that results in a large fraction of the aSe thin film surface to be active for photodetection. Our experiments show that the vertically stacked aSe device detects light from a Xenon flash lamp in a vacuum environment and can produce measurable signals at \(\sim \)130K. We also demonstrate a significant enhancement in the amplitude of the photoinduced signal by growing graphene on the top-metal contact and the aSe thin film. Our results provide the first demonstration of a vertical aSe based VUV photodetector that utilizes the wide-band optical transparency of graphene top-electrode. Our results could open the doorway to a potentially game-changing solution of an integrated charge and light sensor that can be employed in future large-scale time projection chambers with pixelated anode planes.
format Preprint
id arxiv_https___arxiv_org_abs_2411_08823
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Vertically stacked amorphous selenium based VUV photodetectors for use in liquid noble detectors
Tzoka, Iakovos
Rooks, M.
Ishida, A. C. A.
Barajas, A.
Chirayath, V. A.
Asaadi, J.
Instrumentation and Detectors
High Energy Physics - Experiment
We present results from the characterization of a vertically stacked amorphous selenium (aSe)-based photodetector for use in cryogenic environments. aSe has been identified as an ideal photoconductor that can efficiently convert vacuum ultraviolet (VUV) light to charges even at cryogenic temperatures. We have designed and fabricated an aSe device in vertical geometry with top and bottom metal electrodes that produces an electric field perpendicular to the substrate. The top-metal contact has an open design that results in a large fraction of the aSe thin film surface to be active for photodetection. Our experiments show that the vertically stacked aSe device detects light from a Xenon flash lamp in a vacuum environment and can produce measurable signals at \(\sim \)130K. We also demonstrate a significant enhancement in the amplitude of the photoinduced signal by growing graphene on the top-metal contact and the aSe thin film. Our results provide the first demonstration of a vertical aSe based VUV photodetector that utilizes the wide-band optical transparency of graphene top-electrode. Our results could open the doorway to a potentially game-changing solution of an integrated charge and light sensor that can be employed in future large-scale time projection chambers with pixelated anode planes.
title Vertically stacked amorphous selenium based VUV photodetectors for use in liquid noble detectors
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2411.08823