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Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s

Free-running InGaAs/InP single-photon avalanche photodiodes (SPADs) typically operate in the active-quenching mode, facing the problems of long dead time and large timing jitter. In this paper, we demonstrate a 1-GHz gated InGaAs/InP SPAD with the sinusoidal gating signals asynchronous to the incide...

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Autores principales: Wu, Wen, Shan, Xiao, Long, Yaoqiang, Ma, Jing, Huang, Kun, Yan, Ming, Liang, Yan, Zeng, Heping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961215/
https://www.ncbi.nlm.nih.gov/pubmed/36838137
http://dx.doi.org/10.3390/mi14020437
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author Wu, Wen
Shan, Xiao
Long, Yaoqiang
Ma, Jing
Huang, Kun
Yan, Ming
Liang, Yan
Zeng, Heping
author_facet Wu, Wen
Shan, Xiao
Long, Yaoqiang
Ma, Jing
Huang, Kun
Yan, Ming
Liang, Yan
Zeng, Heping
author_sort Wu, Wen
collection PubMed
description Free-running InGaAs/InP single-photon avalanche photodiodes (SPADs) typically operate in the active-quenching mode, facing the problems of long dead time and large timing jitter. In this paper, we demonstrate a 1-GHz gated InGaAs/InP SPAD with the sinusoidal gating signals asynchronous to the incident pulsed laser, enabling free-running single-photon detection. The photon-induced avalanche signals are quenched within 1 ns, efficiently reducing the SPAD’s dead time and achieving a count rate of up to 500 Mcount/s. However, the timing jitter is measured to be ~168 ps, much larger than that of the SPAD with synchronous gates. We adjust the delay between the gating signals and the incident pulsed laser to simulate the random arrival of the photons, and record the timing jitter, respectively, to figure out the cause of the jitter deterioration. In addition, the effects of the incident laser power and working temperature of the APD on the time resolution have been investigated, broadening the applications of the GHz gated free-running SPAD in laser ranging and imaging, fluorescence spectroscopy detection and optical time-domain reflectometry.
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spelling pubmed-99612152023-02-26 Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s Wu, Wen Shan, Xiao Long, Yaoqiang Ma, Jing Huang, Kun Yan, Ming Liang, Yan Zeng, Heping Micromachines (Basel) Article Free-running InGaAs/InP single-photon avalanche photodiodes (SPADs) typically operate in the active-quenching mode, facing the problems of long dead time and large timing jitter. In this paper, we demonstrate a 1-GHz gated InGaAs/InP SPAD with the sinusoidal gating signals asynchronous to the incident pulsed laser, enabling free-running single-photon detection. The photon-induced avalanche signals are quenched within 1 ns, efficiently reducing the SPAD’s dead time and achieving a count rate of up to 500 Mcount/s. However, the timing jitter is measured to be ~168 ps, much larger than that of the SPAD with synchronous gates. We adjust the delay between the gating signals and the incident pulsed laser to simulate the random arrival of the photons, and record the timing jitter, respectively, to figure out the cause of the jitter deterioration. In addition, the effects of the incident laser power and working temperature of the APD on the time resolution have been investigated, broadening the applications of the GHz gated free-running SPAD in laser ranging and imaging, fluorescence spectroscopy detection and optical time-domain reflectometry. MDPI 2023-02-12 /pmc/articles/PMC9961215/ /pubmed/36838137 http://dx.doi.org/10.3390/mi14020437 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wu, Wen
Shan, Xiao
Long, Yaoqiang
Ma, Jing
Huang, Kun
Yan, Ming
Liang, Yan
Zeng, Heping
Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title_full Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title_fullStr Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title_full_unstemmed Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title_short Free-Running Single-Photon Detection via GHz Gated InGaAs/InP APD for High Time Resolution and Count Rate up to 500 Mcount/s
title_sort free-running single-photon detection via ghz gated ingaas/inp apd for high time resolution and count rate up to 500 mcount/s
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961215/
https://www.ncbi.nlm.nih.gov/pubmed/36838137
http://dx.doi.org/10.3390/mi14020437
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