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Active Hypothesis Testing for Quantum Detection of Phase-Shift Keying Coherent States

Quantum Physics 2025-01-28 v1 Information Theory Systems and Control Systems and Control math.IT

Abstract

This paper explores the quantum detection of Phase-Shift Keying (PSK)-coded coherent states through the lens of active hypothesis testing, focusing on a Dolinar-like receiver with constraints on displacement amplitude and energy. With coherent state slicing, we formulate the problem as a controlled sensing task in which observation kernels have parameters shrinking with sample size. The constrained open-loop error exponent and a corresponding upper bound on the Bayesian error probability are proven. Surprisingly, the exponent-optimal open-loop policy for binary PSK with high dark counts is not simply time-sharing. This work serves as a first step towards obtaining analytical insights through the active hypothesis testing framework for designing resource-constrained quantum communication receivers.

Keywords

Cite

@article{arxiv.2501.16218,
  title  = {Active Hypothesis Testing for Quantum Detection of Phase-Shift Keying Coherent States},
  author = {Yun-Feng Lo and Matthieu R. Bloch},
  journal= {arXiv preprint arXiv:2501.16218},
  year   = {2025}
}

Comments

19 pages, 4 figures

R2 v1 2026-06-28T21:20:02.903Z