Efficient Shadow Tomography of Thermal States
Abstract
We present a general protocol for estimating observables from only copies of a Gibbs state whose Hamiltonian is accessible. The protocol uses single-copy, nonadaptive measurements and uses a total Hamiltonian simulation time of ; we show that the sample complexity is optimal in a black-box setting where exponential time Hamiltonian simulation is prohibited. The key idea is a new interpretation of quantum Gibbs samplers as \textit{detailed-balance measurement channels}: measurements that preserve the Gibbs state when outcomes are marginalized. Consequently, shadow tomography of thermal states admits a general efficient algorithm when the Hamiltonian is known, substantially lowering the readout cost in quantum thermal simulation.
Cite
@article{arxiv.2603.16845,
title = {Efficient Shadow Tomography of Thermal States},
author = {Chi-Fang Chen and András Gilyén},
journal= {arXiv preprint arXiv:2603.16845},
year = {2026}
}
Comments
20 pages, 1 figure