Spectroscopy on a single nonlinear mode recognizes quantum states

Fuente: arXiv
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Autori principali: Verstraelen, Wouter, Świerczewski, Stanisław, Opala, Andrzej, Haky, Andrew, Gadani, Matteo, Xu, Huawen, Kyriienko, Oleksandr, Matuszewski, Michał, Bramati, Alberto, Liew, Timothy C. H.
Natura: Preprint
Pubblicazione: 2025
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author Verstraelen, Wouter
Świerczewski, Stanisław
Opala, Andrzej
Haky, Andrew
Gadani, Matteo
Xu, Huawen
Kyriienko, Oleksandr
Matuszewski, Michał
Bramati, Alberto
Liew, Timothy C. H.
author_facet Verstraelen, Wouter
Świerczewski, Stanisław
Opala, Andrzej
Haky, Andrew
Gadani, Matteo
Xu, Huawen
Kyriienko, Oleksandr
Matuszewski, Michał
Bramati, Alberto
Liew, Timothy C. H.
contents Characterising optical quantum states is essential for the development of quantum technologies. While traditional approaches to perform full quantum state tomography are often experimentally demanding, neuromorphic architectures may provide an effective alternative. In this work, we demonstrate how a quantum nonlinear driven-dissipative mode is sufficient to act as a quantum reservoir. By analyzing the occupations at different frequencies in the emission spectrum, a linear regression suffices in many cases to recognize the relevant parameters of incident squeezed states. Beyond highlighting the general potential of this approach under continuous driving, we illustrate its effectiveness in an explicit nontrivial example where the source is a degenerate optical parametric oscillator (OPO), coupled to a nonlinear polariton microcavity.
format Preprint
id arxiv_https___arxiv_org_abs_2511_16945
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spectroscopy on a single nonlinear mode recognizes quantum states
Verstraelen, Wouter
Świerczewski, Stanisław
Opala, Andrzej
Haky, Andrew
Gadani, Matteo
Xu, Huawen
Kyriienko, Oleksandr
Matuszewski, Michał
Bramati, Alberto
Liew, Timothy C. H.
Quantum Physics
Disordered Systems and Neural Networks
Optics
Characterising optical quantum states is essential for the development of quantum technologies. While traditional approaches to perform full quantum state tomography are often experimentally demanding, neuromorphic architectures may provide an effective alternative. In this work, we demonstrate how a quantum nonlinear driven-dissipative mode is sufficient to act as a quantum reservoir. By analyzing the occupations at different frequencies in the emission spectrum, a linear regression suffices in many cases to recognize the relevant parameters of incident squeezed states. Beyond highlighting the general potential of this approach under continuous driving, we illustrate its effectiveness in an explicit nontrivial example where the source is a degenerate optical parametric oscillator (OPO), coupled to a nonlinear polariton microcavity.
title Spectroscopy on a single nonlinear mode recognizes quantum states
topic Quantum Physics
Disordered Systems and Neural Networks
Optics
url https://arxiv.org/abs/2511.16945