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Matrix phase-space representations for quantum symmetries

arXiv
Authors: Peter D. Drummond, Alexander S. Dellios, Margaret D. Reid

Year

2026

Paper ID

68771

Status

Preprint

Abstract Read

~2 min

Abstract Words

124

Citations

0

Abstract

We introduce a general phase-space representation that includes global quantum symmetries in the basis expansion. This method, called matrix phase-space, projects the basis onto a reduced Hilbert space, which can greatly reduce sampling errors of many-body quantum simulations and unifies several previous phase-space methods. The purpose of this paper is to provide detailed proofs of basic theorems and operator identities. We also treat several different types of symmetries. To illustrate the benefits of matrix phase-space methods, we give a detailed derivation of a recent application to the topical problem of verifying the outputs of Gaussian boson sampling (GBS) quantum computers with photon number resolving detectors. This has exponential complexity, and using parity symmetry reduces sampling errors by very large factors relative to earlier methods.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • We introduce a general phase-space representation that includes global quantum symmetries in the basis expansion.

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Current Paper #68771 #69041 Multi-modes Bessel-Gaussian-Orb... #69040 Collective Emission in LH2 Asse... #69038 Physically Constrained Ensemble... #69034 Hardware-aware Low-latency Quan...

External citation index: OpenAlex citation signal • updated 2026-06-14 19:49:12

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