Extending the dynamic range in quantum frequency estimation with sequential weak measurements

Fuente: arXiv
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Main Authors: Direkci, Su, Endres, Manuel, Gefen, Tuvia
Format: Preprint
Published: 2025
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author Direkci, Su
Endres, Manuel
Gefen, Tuvia
author_facet Direkci, Su
Endres, Manuel
Gefen, Tuvia
contents Quantum metrology explores optimal quantum protocols for parameter estimation. In the context of optical atomic clocks, conventional protocols focus on optimal input states and measurements to achieve enhanced sensitivities. However, such protocols are typically limited by phase slip errors inflicted due to the decoherence of the local oscillator. Here, we study schemes to extend the dynamic range and overcome phase slip noise through weak measurements with ancilla qubits. Using coherent spin states, we find optimal weak measurements protocols: we identify optimal measurement strength for any given interrogation time and number of atoms. Then, we combine weak and projective measurements to construct a protocol that asymptotically saturates the noiseless precision limits, and outperforms previously proposed methods for phase slip noise suppression.
format Preprint
id arxiv_https___arxiv_org_abs_2509_01474
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extending the dynamic range in quantum frequency estimation with sequential weak measurements
Direkci, Su
Endres, Manuel
Gefen, Tuvia
Quantum Physics
Quantum metrology explores optimal quantum protocols for parameter estimation. In the context of optical atomic clocks, conventional protocols focus on optimal input states and measurements to achieve enhanced sensitivities. However, such protocols are typically limited by phase slip errors inflicted due to the decoherence of the local oscillator. Here, we study schemes to extend the dynamic range and overcome phase slip noise through weak measurements with ancilla qubits. Using coherent spin states, we find optimal weak measurements protocols: we identify optimal measurement strength for any given interrogation time and number of atoms. Then, we combine weak and projective measurements to construct a protocol that asymptotically saturates the noiseless precision limits, and outperforms previously proposed methods for phase slip noise suppression.
title Extending the dynamic range in quantum frequency estimation with sequential weak measurements
topic Quantum Physics
url https://arxiv.org/abs/2509.01474