Certifying Nonclassical Proper-Time Histories with a Quantum Clock
摘要
Quantum clocks can acquire relativistic phases from motional or gravitational proper-time differences, but reduced clock dephasing alone does not certify nonclassical proper-time histories. We formulate this distinction as a channel-certification problem. First, we show that any two-level single-time dephasing signal, including one generated by an effective quantum proper-time label, admits a classical random proper-time representation. We then define the convex set of classical mixtures of experimentally specified proper-time histories and prove a Choi-rank separation criterion for conditioned coherent history recombination. A two-branch Ramsey protocol gives explicit bright- and dark-port population witnesses outside this classical set. The certification is operational and relative to the specified history set: it rules out classical mixtures of the same implemented proper-time histories, not arbitrary classical protocols with different histories or controls.
引用
@article{arxiv.2606.12755,
title = {Certifying Nonclassical Proper-Time Histories with a Quantum Clock},
author = {Shuai Zeng},
journal= {arXiv preprint arXiv:2606.12755},
year = {2026}
}
备注
12 pages, 1 figure, 2 tables