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January 1, 2016Journal of High Energy Physics627 citationsOpen Access

Gravitational memory, BMS supertranslations and soft theorems

ASAndrew StromingerAZAlexander Zhiboedov

Key Points

  • This research investigates how gravitational radiation affects detectors located near future null infinity, focusing on the associated supertranslation effects.
  • Considered the impact of a gravitating radiation pulse on arrays of detectors at future null infinity.
  • Derived expressions for BMS supertranslations related to the spatial displacement of detectors before and after radiation transit.
  • Examined the relationship between detector displacements and soft graviton production formulas.
  • Detectors showed relative positions changing due to a BMS supertranslation effect.
  • The expression for displacement memory aligns with the established gravitational memory effect.
  • The gravitational memory displacement formula corresponds with Weinberg's soft graviton production formula.

Abstract

The transit of a gravitating radiation pulse past arrays of detectors stationed near future null infinity in the vacuum is considered. It is shown that the relative positions and clock times of the detectors before and after the radiation transit differ by a BMS supertranslation. An explicit expression for the supertranslation in terms of moments of the radiation energy flux is given. The relative spatial displacement found for a pair of nearby detectors reproduces the well-known and potentially measurable gravitational memory effect. The displacement memory formula is shown to be equivalent to Weinberg’s formula for soft graviton production.

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Cite This Study

Strominger et al. (2016) studied this question.

synapsesocial.com/papers/6a089b58ad370a6b44de37e2https://doi.org/10.1007/jhep01(2016)086
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