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Benchmarking quantum phase-space methods for near-resonant light propagation

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arxiv 2602.17660 v3 pith:47YFWKJR submitted 2026-02-19 quant-ph math-phmath.MP

Benchmarking quantum phase-space methods for near-resonant light propagation

classification quant-ph math-phmath.MP
keywords dynamicsatomiclightnear-resonantphase-spacetruncatedwigneranalyzed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the dynamics of light interacting with a near-resonant atomic medium using the truncated Wigner and positive P phase-space representations. The atomic degrees of freedom are described using the Jordan-Schwinger mapping. The dynamics is first analyzed under unitary evolution and subsequently in the presence of an optical reservoir. While both approaches capture the main features of the light-matter dynamics, we find that the truncated Wigner approximation exhibits noticeable deviations for stronger interaction strengths and when reservoir-induced noise becomes significant.

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