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Research PaperResearchia:202609.02073

Local Gaussian bounds on the non-destructive discrimination of two-mode squeezed states

Mi-Jung So

Abstract

Typical measurement setups in quantum systems are destructive, meaning that states are irretrievably altered after measurement. In this work, we analyse non-destructive discrimination of two two-mode squeezed vacuum states using local Gaussian measurements. We investigate a tradeoff relation between the success probability of discrimination and the fidelity of the resulting state with the initial state, and construct a protocol given by local Gaussian measurements, which is optimal within our nu...

Submitted: September 2, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

Typical measurement setups in quantum systems are destructive, meaning that states are irretrievably altered after measurement. In this work, we analyse non-destructive discrimination of two two-mode squeezed vacuum states using local Gaussian measurements. We investigate a tradeoff relation between the success probability of discrimination and the fidelity of the resulting state with the initial state, and construct a protocol given by local Gaussian measurements, which is optimal within our numerically explored class. We also extend to the case where we allow for additional pre-shared entanglement, and show that this regime allows us to exceed the standard local Gaussian bound for the fidelity-success probability tradeoff. Our work provides a natural extension of the tradeoff between information gain and disturbance in entangled-state discrimination, previously established for finite-dimensional quantum systems, to infinite-dimensional continuous-variable systems.


Source: arXiv:2609.01373v1 - http://arxiv.org/abs/2609.01373v1 PDF: https://arxiv.org/pdf/2609.01373v1 Original Link: http://arxiv.org/abs/2609.01373v1

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Date:
Sep 2, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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