English

A Mirror-Descent Algorithm for Computing the Petz-R\'enyi Capacity of Classical-Quantum Channels

Quantum Physics 2026-01-16 v1 Information Theory math.IT Optimization and Control

Abstract

We study the computation of the α\alpha-R\'enyi capacity of a classical-quantum (c-q) channel for α(0,1)\alpha\in(0,1). We propose an exponentiated-gradient (mirror descent) iteration that generalizes the Blahut-Arimoto algorithm. Our analysis establishes relative smoothness with respect to the entropy geometry, guaranteeing a global sublinear convergence of the objective values. Furthermore, under a natural tangent-space nondegeneracy condition (and a mild spectral lower bound in one regime), we prove local linear (geometric) convergence in Kullback-Leibler divergence on a truncated probability simplex, with an explicit contraction factor once the local curvature constants are bounded.

Keywords

Cite

@article{arxiv.2601.10558,
  title  = {A Mirror-Descent Algorithm for Computing the Petz-R\'enyi Capacity of Classical-Quantum Channels},
  author = {Yu-Hong Lai and Hao-Chung Cheng},
  journal= {arXiv preprint arXiv:2601.10558},
  year   = {2026}
}

Comments

This paper is independent and concurrent to arXiv:2601.06492

R2 v1 2026-07-01T09:06:10.819Z