Fast remote spectral discrimination through ghost spectrometry

Fuente: arXiv
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Autori principali: Chiuri, Andrea, Barbieri, Marco, Venditti, Iole, Angelini, Federico, Battocchio, Chiara, Paris, Matteo G A, Gianani, Ilaria
Natura: Preprint
Pubblicazione: 2023
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author Chiuri, Andrea
Barbieri, Marco
Venditti, Iole
Angelini, Federico
Battocchio, Chiara
Paris, Matteo G A
Gianani, Ilaria
author_facet Chiuri, Andrea
Barbieri, Marco
Venditti, Iole
Angelini, Federico
Battocchio, Chiara
Paris, Matteo G A
Gianani, Ilaria
contents Assessing the presence of chemical, biological, radiological and nuclear threats is a crucial task which is usually dealt with by analyzing the presence of spectral features in a measured absorption profile. The use of quantum light allows to perform these measurements remotely without compromising the measurement accuracy through ghost spectrometry. However, in order to have sufficient signal-to-noise ratio, it is typically required to wait long acquisition times, hence subtracting to the benefits provided by remote sensing. In many instances, though, reconstructing the full spectral lineshape of an object is not needed and the interest lies in discriminating whether a spectrally absorbing object may be present or not. Here we show that this task can be performed fast and accurately through ghost spectrometry by comparing the low resources measurement with a reference. We discuss the experimental results obtained with different samples and complement them with simulations to explore the most common scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2303_15120
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Fast remote spectral discrimination through ghost spectrometry
Chiuri, Andrea
Barbieri, Marco
Venditti, Iole
Angelini, Federico
Battocchio, Chiara
Paris, Matteo G A
Gianani, Ilaria
Quantum Physics
Assessing the presence of chemical, biological, radiological and nuclear threats is a crucial task which is usually dealt with by analyzing the presence of spectral features in a measured absorption profile. The use of quantum light allows to perform these measurements remotely without compromising the measurement accuracy through ghost spectrometry. However, in order to have sufficient signal-to-noise ratio, it is typically required to wait long acquisition times, hence subtracting to the benefits provided by remote sensing. In many instances, though, reconstructing the full spectral lineshape of an object is not needed and the interest lies in discriminating whether a spectrally absorbing object may be present or not. Here we show that this task can be performed fast and accurately through ghost spectrometry by comparing the low resources measurement with a reference. We discuss the experimental results obtained with different samples and complement them with simulations to explore the most common scenarios.
title Fast remote spectral discrimination through ghost spectrometry
topic Quantum Physics
url https://arxiv.org/abs/2303.15120