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Gravitational memory and Ward identities in the local detector frame

  • Valerio De Luca*
  • , Justin Khoury*
  • , Sam S. C. Wong*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

Gravitational memory, which describes the permanent shift in the strain after the passage of gravitational waves, is directly related to Weinberg's soft graviton theorems and the Bondi-Metzner-Sachs (BMS) symmetry group of asymptotically flat space-times. In this work, we provide an equivalent description of the phenomenon in local coordinates around gravitational wave detectors, such as transverse-traceless (TT) gauge. We show that gravitational memory is encoded in large residual diffeomorphisms in this gauge, which include time-dependent anisotropic spatial rescalings, and prove their equivalence to BMS transformations when translated to TT gauge. We then derive the associated Ward identities and associated soft theorems, for both scattering amplitudes and equal-time (in-in) correlation functions, and explicitly check their validity for planar gravitational waves. The in-in identities are recognized as the flat-space analog of the well-known inflationary consistency relations.  © 2025 American Physical Society
Original languageEnglish
Article number024032
JournalPhysical Review D
Volume112
Issue number2
Online published14 Jul 2025
DOIs
Publication statusPublished - 15 Jul 2025

Bibliographical note

Publisher Copyright:
© 2025 American Physical Society.

Funding

V. D. L. is supported by funds provided by the Center for Particle Cosmology at the University of Pennsylvania. The work of J. K. is supported in part by the DOE (HEP) Award No. DE-SC0013528. The work of S. S. C. W. is supported by APRC-CityU New Research Initiatives/Infrastructure Support from Central.

Publisher's Copyright Statement

  • COPYRIGHT TERMS OF DEPOSITED FINAL PUBLISHED VERSION FILE: De Luca, V., Khoury, J., & Wong, S. S. C. (2025). Gravitational memory and Ward identities in the local detector frame. Physical Review D, 112(2), Article 024032. https://doi.org/10.1103/PhysRevD.112.024032 The copyright of this article is owned by American Physical Society.

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