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Correlators of Worldline Proper Length

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arxiv 2406.17205 v1 pith:SWPFO2PR submitted 2024-06-25 hep-th cond-mat.str-elgr-qchep-phquant-ph

classification hep-thcond-mat.str-elgr-qchep-phquant-ph
keywords worldlinecorrelatorslengthpropertimeactioncorrelationscoupled
verification ladder T0 review T1 audit T2 compute T3 formal
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A classical observer can measure elapsed proper time along their worldline. When observers are coupled to a system with internal correlations, measurements of elapsed time may inherit these correlations. We show that derivatives of the on-shell action with respect to worldline mass compute correlation functions of worldline proper length at tree level. We study worldlines coupled to a scalar field. We calculate the length-length two-point function and find it arises from correlated path fluctuations. As an application, we propose that the logarithm of local correlators serves as a generating function of length correlators, which generalizes the on-shell action prescription. Using this proposal, we extract AdS worldline observables from local CFT correlators as computed by Witten diagrams. We briefly discuss extensions to gravity, interferometers, and the holographic encoding of observer time.

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Cited by 3 Pith papers

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

  1. A de Sitter Anti-Scrambling Algebra

    hep-th 2026-07 conditional novelty 7.0 of 10

    In a toy model of de Sitter quantum gravity, shockwave time advances break the KMS condition and prevent the Hartle-Hawking state from being a trace on the observer's crossed-product algebra.

  2. Imprint of the black hole interior on thermal four-point correlators

    hep-th 2025-12 conditional novelty 6.0 of 10

    Analytically continuing and smearing thermal four-point correlators turns them into flat-space scattering amplitudes at a bulk point inside the black hole.

  3. Observer Time from Causality in Perturbative Quantum Gravity

    hep-th 2025-06 conditional novelty 5.0 of 10

    A lightbulb-and-mirror protocol defines diffeomorphism-invariant elapsed proper time, and its leading quantum gravity correction makes the time a noncommuting quantum operator.

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