Massively Multiplexed Wide-field Photon Correlation Sensing

Fuente: arXiv
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Hauptverfasser: Elmalem, Shay, Lubin, Gur, Wayne, Michael, Bruschini, Claudio, Charbon, Edoardo, Oron, Dan
Format: Preprint
Veröffentlicht: 2024
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author Elmalem, Shay
Lubin, Gur
Wayne, Michael
Bruschini, Claudio
Charbon, Edoardo
Oron, Dan
author_facet Elmalem, Shay
Lubin, Gur
Wayne, Michael
Bruschini, Claudio
Charbon, Edoardo
Oron, Dan
contents Temporal photon correlations have been a crucial resource for quantum and quantum-enabled optical science for over half a century. However, attaining non-classical information through these correlations has typically been limited to a single point (or at best, a few points) at-a-time. We perform here a massively multiplexed wide-field photon correlation measurement using a large $500\times500$ single-photon avalanche diode array, the SwissSPAD3. We demonstrate the performance of this apparatus by acquiring wide-field photon correlation measurements of single-photon emitters, and illustrate two applications of the attained quantum information: wide-field emitter counting and quantum-enabled super-resolution imaging (by a factor of $\sqrt{2})$. The considerations and limitations of applying this technique in a practical context are discussed. Ultimately, the realization of massively multiplexed wide-field photon correlation measurements can accelerate quantum sensing protocols and quantum-enabled imaging techniques by orders of magnitude.
format Preprint
id arxiv_https___arxiv_org_abs_2412_16914
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Massively Multiplexed Wide-field Photon Correlation Sensing
Elmalem, Shay
Lubin, Gur
Wayne, Michael
Bruschini, Claudio
Charbon, Edoardo
Oron, Dan
Optics
Temporal photon correlations have been a crucial resource for quantum and quantum-enabled optical science for over half a century. However, attaining non-classical information through these correlations has typically been limited to a single point (or at best, a few points) at-a-time. We perform here a massively multiplexed wide-field photon correlation measurement using a large $500\times500$ single-photon avalanche diode array, the SwissSPAD3. We demonstrate the performance of this apparatus by acquiring wide-field photon correlation measurements of single-photon emitters, and illustrate two applications of the attained quantum information: wide-field emitter counting and quantum-enabled super-resolution imaging (by a factor of $\sqrt{2})$. The considerations and limitations of applying this technique in a practical context are discussed. Ultimately, the realization of massively multiplexed wide-field photon correlation measurements can accelerate quantum sensing protocols and quantum-enabled imaging techniques by orders of magnitude.
title Massively Multiplexed Wide-field Photon Correlation Sensing
topic Optics
url https://arxiv.org/abs/2412.16914