Fock-state Filtering of Squeezed States: Enhanced Nonclassicality and Effects of a Thermal Bath

Abstract The ability to tailor photon-number statistics is central to the generation and control of nonclassical states of light. Here, we investigate how Fock-state filtering of squeezed coherent states can be used to engineer their photon statistics. We consider the selective removal of the $$\\varvec{m=0}$$ and $$\\varvec{m=1}$$ Fock components and show that this process can enhance the sub-Poissonian character of the field, depending on the coherent amplitude. We then analyze the evolution of these engineered states in a thermal environment. Although all states eventually relax toward thermal statistics, the signatures of the filtering process may persist over a significant part of the evolution, while the purity of the filtered states is rapidly degraded by incoherent population redistribution. Our results illustrate both the potential and the limitations of photon-number engineering in realistic, dissipative settings.

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Publication Details

Journal
Brazilian Journal of Physics
Published
2026-09-21
DOI
https://doi.org/10.1007/s13538-026-02146-z
Primary Topic
Quantum Information and Cryptography
Type
article
Field-Weighted Citation Impact
0.00

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article

Fock-state Filtering of Squeezed States: Enhanced Nonclassicality and Effects of a Thermal Bath

A. Vidiella-Barranco, João Pedro González de Oliveira
Brazilian Journal of Physics
Quantum Information and Cryptography
article

Fock-state Filtering of Squeezed States: Enhanced Nonclassicality and Effects of a Thermal Bath

A. Vidiella-Barranco, João Pedro González de Oliveira
article en

Abstract

Abstract The ability to tailor photon-number statistics is central to the generation and control of nonclassical states of light. Here, we investigate how Fock-state filtering of squeezed coherent states can be used to engineer their photon statistics. We consider the selective removal of the $$\varvec{m=0}$$ and $$\varvec{m=1}$$ Fock components and show that this process can enhance the sub-Poissonian character of the field, depending on the coherent amplitude. We then analyze the evolution of these engineered states in a thermal environment. Although all states eventually relax toward thermal statistics, the signatures of the filtering process may persist over a significant part of the evolution, while the purity of the filtered states is rapidly degraded by incoherent population redistribution. Our results illustrate both the potential and the limitations of photon-number engineering in realistic, dissipative settings.

Brazilian Journal of PhysicsVol. 56(6)
Universidade Estadual de Campinas (UNICAMP) (BR)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
Openalex Percentile: Top 19%
Quantum Information and Cryptography
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Fock-state Filtering of Squeezed States: Enhanced Nonclassicality and Effects of a Thermal Bath — A. Vidiella-Barranco, João Pedro González de Oliveira · Brazilian Journal of Physics (2026) | TGRS Research Map | TGRS