Continuous real-time tracking of a quantum phase below the standard quantum limit
Atomic Physics
2019-06-20 v3 Quantum Physics
Abstract
We propose a scheme for continuously measuring the evolving quantum phase of a collective spin composed of pseudospins. Quantum non-demolition measurements of a lossy cavity mode interacting with an atomic ensemble are used to directly probe the phase of the collective atomic spin without converting it into a population difference. Unlike traditional Ramsey measurement sequences, our scheme allows for real-time tracking of time-varying signals. As a bonus, spin-squeezed states develop naturally, providing real-time phase estimation significantly more precise than the standard quantum limit of radians.
Cite
@article{arxiv.1809.08216,
title = {Continuous real-time tracking of a quantum phase below the standard quantum limit},
author = {Athreya Shankar and Graham P. Greve and Baochen Wu and James K. Thompson and Murray Holland},
journal= {arXiv preprint arXiv:1809.08216},
year = {2019}
}
Comments
6 + 6 pages, 3 + 2 figures, includes Supplemental Material; close to journal version