Quantum Filtering for Squeezed Noise Inputs

Fuente: arXiv
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Main Authors: Gough, John, Rees, Dylon
Format: Preprint
Published: 2026
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author Gough, John
Rees, Dylon
author_facet Gough, John
Rees, Dylon
contents We derive the quantum filter for a quantum open system undergoing quadrature measurements (homodyning) where the input field is in a general quasi-free state. This extends previous work for thermal input noise and allows for squeezed inputs. We introduce a convenient class of Bogoliubov transformations which we refer to as balanced and formulate the quantum stochastic model with squeezed noise as an Araki-Woods type representation. We make an essential use of the Tomita-Takesaki theory to construct the commutant of the C*-algebra describing the inputs and obtain the filtering equations using the quantum reference probability technique. The derived quantum filter must be independent of the choice of representation and this is achieved by fixing an independent quadrature in the commutant algebra.
format Preprint
id arxiv_https___arxiv_org_abs_2601_12564
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Quantum Filtering for Squeezed Noise Inputs
Gough, John
Rees, Dylon
Quantum Physics
Mathematical Physics
We derive the quantum filter for a quantum open system undergoing quadrature measurements (homodyning) where the input field is in a general quasi-free state. This extends previous work for thermal input noise and allows for squeezed inputs. We introduce a convenient class of Bogoliubov transformations which we refer to as balanced and formulate the quantum stochastic model with squeezed noise as an Araki-Woods type representation. We make an essential use of the Tomita-Takesaki theory to construct the commutant of the C*-algebra describing the inputs and obtain the filtering equations using the quantum reference probability technique. The derived quantum filter must be independent of the choice of representation and this is achieved by fixing an independent quadrature in the commutant algebra.
title Quantum Filtering for Squeezed Noise Inputs
topic Quantum Physics
Mathematical Physics
url https://arxiv.org/abs/2601.12564