Parametrized protocol achieving the Heisenberg limit in the optical domain via dispersive atom-light interactions

Fuente: arXiv
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Main Authors: Su, Yuguo, Wang, Xiaoguang
Format: Preprint
Published: 2020
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author Su, Yuguo
Wang, Xiaoguang
author_facet Su, Yuguo
Wang, Xiaoguang
contents The strong and collective atom-light interactions in cavity-QED systems perform manifold benefits in quantum-enhanced measurements. Here, we study the time-reversal protocol that has been proposed to sense small displacements of the light field, and report the sensitivity of the scheme that could be speeded up to attain the Heisenberg limit (HL).We show the holonomic unitary parametrization process of the scheme and one only need to choose appropriate initial states to pursue the ultimate sensitivity. The scheme may pave an experimentally feasible way to achieve Heisenberg-limited metrology with nonclassical states.
format Preprint
id arxiv_https___arxiv_org_abs_2010_14842
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Parametrized protocol achieving the Heisenberg limit in the optical domain via dispersive atom-light interactions
Su, Yuguo
Wang, Xiaoguang
Quantum Physics
The strong and collective atom-light interactions in cavity-QED systems perform manifold benefits in quantum-enhanced measurements. Here, we study the time-reversal protocol that has been proposed to sense small displacements of the light field, and report the sensitivity of the scheme that could be speeded up to attain the Heisenberg limit (HL).We show the holonomic unitary parametrization process of the scheme and one only need to choose appropriate initial states to pursue the ultimate sensitivity. The scheme may pave an experimentally feasible way to achieve Heisenberg-limited metrology with nonclassical states.
title Parametrized protocol achieving the Heisenberg limit in the optical domain via dispersive atom-light interactions
topic Quantum Physics
url https://arxiv.org/abs/2010.14842