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Reversing Unknown Quantum Processes via Virtual Combs for Channels with Limited Information

Quantum Physics 2024-07-23 v2

Abstract

The inherent irreversibility of quantum dynamics for open systems poses a significant barrier to the inversion of unknown quantum processes. To tackle this challenge, we propose the framework of virtual combs that exploit the unknown process iteratively with additional classical post-processing to simulate the process inverse. Notably, we demonstrate that an nn-slot virtual comb can exactly reverse a depolarizing channel with one unknown noise parameter out of n+1n+1 potential candidates, and a 1-slot virtual comb can exactly reverse an arbitrary pair of quantum channels. We further explore the approximate inversion of an unknown channel within a given channel set. A worst-case error decay of O(n1)\mathcal{O}(n^{-1}) is unveiled for depolarizing channels within a specified noise region. Moreover, we show that virtual combs can universally reverse unitary operations and investigate the trade-off between the slot number and the sampling overhead.

Keywords

Cite

@article{arxiv.2401.04672,
  title  = {Reversing Unknown Quantum Processes via Virtual Combs for Channels with Limited Information},
  author = {Chengkai Zhu and Yin Mo and Yu-Ao Chen and Xin Wang},
  journal= {arXiv preprint arXiv:2401.04672},
  year   = {2024}
}

Comments

5 + 14 pages, 3 figures

R2 v1 2026-06-28T14:12:32.142Z