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Non-Hermitian sensing from the perspective of post-selected measurements

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arxiv 2505.05058 v2 pith:O7XBNP2T submitted 2025-05-08 quant-ph

classification quant-ph
keywords non-hermitianquantumeffectivemeasurementspost-selectedsensingsensorsframework
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By employing the Naimark dilation, we establish a fundamental connection between non-Hermitian quantum sensing and post-selected measurements. The sensitivity of non-Hermitian quantum sensors is determined by the effective quantum Fisher information (QFI), which incorporates the success probability of post-selection. We demonstrate that non-Hermitian sensors cannot outperform their Hermitian counterpart when all information is harnessed, since the total QFI for the extended system constrains the effective QFI of the non-Hermitian subsystem. Moreover, we quantify the efficiency of non-Hermitian sensors with the ratio of the effective QFI to the total QFI, which can be optimized within the framework of post-selected measurements with minimal experimental trials. Our work provides a distinctive theoretical framework for investigating non-Hermitian quantum sensing and designing noise-resilient quantum metrological protocols.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Arbitrary Control of Non-Hermitian Skin Modes via Disorder and An Electric Field

    cond-mat.dis-nn 2025-11 conditional novelty 6.0 of 10

    Combining disorder with a static electric field lets the boundary accumulation direction of two-dimensional non-Hermitian skin modes be tuned by rotating the field relative to the nonreciprocal hopping.

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