CubeSat single-photon detector module for investigating in-orbit laser annealing to heal radiation damage

Fuente: arXiv
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Main Authors: Sultana, Nigar, Krynski, Joanna, Lim, Jin Gyu, Floyd, John, Lembeck, Michael, Makarov, Vadim, Kwiat, Paul, Jennewein, Thomas
Format: Preprint
Published: 2024
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author Sultana, Nigar
Krynski, Joanna
Lim, Jin Gyu
Floyd, John
Lembeck, Michael
Makarov, Vadim
Kwiat, Paul
Jennewein, Thomas
author_facet Sultana, Nigar
Krynski, Joanna
Lim, Jin Gyu
Floyd, John
Lembeck, Michael
Makarov, Vadim
Kwiat, Paul
Jennewein, Thomas
contents Single-photon avalanche photodiodes (SPADs) based on silicon are widely considered for quantum satellite communications but suffer from an increasing dark count rate (DCR) due to displacement damage in their active areas induced by proton radiation. When the DCR of SPADs exceeds a certain threshold, they become unusable for quantum communication protocols. Previous laboratory experiments have demonstrated that laser annealing of SPADs' active area with about 1~W optical power can significantly reduce radiation-induced DCR of synthetically irradiated SPADs. To assess the feasibility of in-orbit laser annealing on constantly irradiated SPADs in low-Earth orbit, we developed a module with a CubeSat form factor capable of both laser and thermal annealing of four silicon SPADs. Here we report the design and ground testing of this module, investigating laser annealing in a simulated space environment. Our results pave the way for an in-orbit trial that may prove this technology useful for future satellite missions with quantum receivers on board.
format Preprint
id arxiv_https___arxiv_org_abs_2412_20559
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle CubeSat single-photon detector module for investigating in-orbit laser annealing to heal radiation damage
Sultana, Nigar
Krynski, Joanna
Lim, Jin Gyu
Floyd, John
Lembeck, Michael
Makarov, Vadim
Kwiat, Paul
Jennewein, Thomas
Instrumentation and Detectors
Quantum Physics
Single-photon avalanche photodiodes (SPADs) based on silicon are widely considered for quantum satellite communications but suffer from an increasing dark count rate (DCR) due to displacement damage in their active areas induced by proton radiation. When the DCR of SPADs exceeds a certain threshold, they become unusable for quantum communication protocols. Previous laboratory experiments have demonstrated that laser annealing of SPADs' active area with about 1~W optical power can significantly reduce radiation-induced DCR of synthetically irradiated SPADs. To assess the feasibility of in-orbit laser annealing on constantly irradiated SPADs in low-Earth orbit, we developed a module with a CubeSat form factor capable of both laser and thermal annealing of four silicon SPADs. Here we report the design and ground testing of this module, investigating laser annealing in a simulated space environment. Our results pave the way for an in-orbit trial that may prove this technology useful for future satellite missions with quantum receivers on board.
title CubeSat single-photon detector module for investigating in-orbit laser annealing to heal radiation damage
topic Instrumentation and Detectors
Quantum Physics
url https://arxiv.org/abs/2412.20559