Active polarization stabilization of fields in an optical fiber for protective measurements

Fuente: arXiv
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Main Authors: Pascoe, E., Catalan, A., Sharkansky, J., Beck, M.
Format: Preprint
Published: 2026
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author Pascoe, E.
Catalan, A.
Sharkansky, J.
Beck, M.
author_facet Pascoe, E.
Catalan, A.
Sharkansky, J.
Beck, M.
contents We have performed Zeno protective measurements of quantum polarization states by coupling the polarization to a temporal pointer (arrival time) in a birefringent optical fiber. It is necessary to actively stabilize the polarization, and we do this by using the signal photon counts themselves as the error signal in a feedback loop. We compare these measurements to a stabilization scheme using a classical reference beam as the error signal. The method using photon counts has higher signal levels and significantly reduced background. These improvements allow us to increase the number of Zeno stages in our measurements from 9 to 13, with a corresponding decrease in the measurement uncertainty.
format Preprint
id arxiv_https___arxiv_org_abs_2601_20991
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Active polarization stabilization of fields in an optical fiber for protective measurements
Pascoe, E.
Catalan, A.
Sharkansky, J.
Beck, M.
Quantum Physics
We have performed Zeno protective measurements of quantum polarization states by coupling the polarization to a temporal pointer (arrival time) in a birefringent optical fiber. It is necessary to actively stabilize the polarization, and we do this by using the signal photon counts themselves as the error signal in a feedback loop. We compare these measurements to a stabilization scheme using a classical reference beam as the error signal. The method using photon counts has higher signal levels and significantly reduced background. These improvements allow us to increase the number of Zeno stages in our measurements from 9 to 13, with a corresponding decrease in the measurement uncertainty.
title Active polarization stabilization of fields in an optical fiber for protective measurements
topic Quantum Physics
url https://arxiv.org/abs/2601.20991