English

Quantum metrology enhanced by effective time reversal

Quantum Physics 2026-02-20 v3

Abstract

Quantum metrology involves the application of quantum resources to enhance measurements. Several communities have developed quantum-metrology strategies that leverage effective time reversals. These strategies, we posit, form four classes. First, echo metrology begins with a preparatory unitary and ends with that unitary's time-reverse. The protocol amplifies the visibility of a small parameter to be sensed. Similarly, weak-value amplification enhances a weak coupling's detectability. The technique exhibits counterintuitive properties captured by a retrocausal model. Using the third strategy, one simulates closed timelike curves, worldlines that loop back on themselves in time. The fourth strategy involves indefinite causal order, which characterises channels applied in a superposition of orderings. We review these four strategies, which we unify under the heading of time-reverse metrology. We also outline opportunities for this toolkit in quantum metrology; quantum information science; quantum foundations; atomic, molecular, and optical physics; and solid-state physics.

Keywords

Cite

@article{arxiv.2601.20952,
  title  = {Quantum metrology enhanced by effective time reversal},
  author = {Yu-Xin Wang and Flavio Salvati and David R. M. Arvidsson-Shukur and William F. Braasch and Kater Murch and Nicole Yunger Halpern},
  journal= {arXiv preprint arXiv:2601.20952},
  year   = {2026}
}

Comments

11 pages, including 1 table and 4 figures. Bibliography updated

R2 v1 2026-07-01T09:24:31.079Z