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相关论文: Gravitational wave memory and its tail in cosmolog…

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We study a novel cubic nonlinear effect, the tails-of-memory, which consist of a combination of the tail effect (backscattering of linear gravitational waves against the curvature of spacetime generated by the source) and the memory effect…

广义相对论与量子宇宙学 · 物理学 2024-02-16 David Trestini , Luc Blanchet

Gravitational-wave tails are linear waves that backscatter on the curvature of space-time generated by the total mass-energy of the source. The non-linear memory effect arises from gravitational waves sourced by the stress-energy…

广义相对论与量子宇宙学 · 物理学 2024-02-16 David Trestini , Luc Blanchet

The nonlinear memory effect is a slowly-growing, non-oscillatory contribution to the gravitational-wave amplitude. It originates from gravitational waves that are sourced by the previously emitted waves. In an ideal gravitational-wave…

广义相对论与量子宇宙学 · 物理学 2010-05-27 Marc Favata

It is well known that energy fluxes will produce gravitational wave memory. The gravitational wave memory produced by background including cosmic microwave background (CMB), cosmic neutrino background (C$\nu$B), and gravitational wave…

广义相对论与量子宇宙学 · 物理学 2022-11-01 Zhoujian Cao , Xiaokai He , Zhi-Chao Zhao

Gravitational-wave tails are due to the backscattering of linear waves onto the space-time curvature generated by the total mass of the matter source. The dominant tails correspond to quadratic non-linear interactions and arise at the…

广义相对论与量子宇宙学 · 物理学 2016-12-07 Tanguy Marchand , Luc Blanchet , Guillaume Faye

Nonlinear gravitational wave memory is a surprise of theoretical physics. Whereas it is understood that a gravitational wave induces oscillatory squeezing and stretching motion in a collection of freely-falling test masses, it is unexpected…

广义相对论与量子宇宙学 · 物理学 2025-06-27 Robert R. Caldwell

We extend recent theoretical results on the propagation of linear gravitational waves (GWs), including their associated memories, in spatially flat Friedmann--Lema\^{i}tre--Robertson--Walker (FLRW) universes, for all spacetime dimensions…

广义相对论与量子宇宙学 · 物理学 2017-09-27 Yi-Zen Chu

Gravitational wave memory is a nonoscillatory correction to the gravitational wave strain predicted by general relativity, which has yet to be detected. Within general relativity, its dominant component, known as the null memory, can be…

广义相对论与量子宇宙学 · 物理学 2023-07-26 Lavinia Heisenberg , Nicolás Yunes , Jann Zosso

Gravitational-wave memory is a low-frequency, non-oscillatory component of the radiation field that provides a potentially powerful but as yet undetected probe of strong-field gravity. We present the first calculation of gravitational…

广义相对论与量子宇宙学 · 物理学 2026-04-13 Silvia Gasparotto , Jann Zosso , Llibert Aresté Saló , Daniela D. Doneva , Stoytcho S. Yazadjiev

Gravitational-wave memory is a low-frequency, non-oscillatory signal that provides a promising probe of strong-field gravity. We present the first computation of memory from full inspiral--merger--ringdown waveforms in a theory beyond GR,…

广义相对论与量子宇宙学 · 物理学 2026-05-11 Silvia Gasparotto

Primordial gravitational waves, after they enter the horizon and decay away, leave a residual displacement in test particles: a memory, in analogy with gravitational waves generated by astrophysical sources. The late-time distance between…

广义相对论与量子宇宙学 · 物理学 2024-12-17 Paolo Creminelli , Filippo Vernizzi

We examine gravitational wave memory in the case where sources and detector are in a $\Lambda$CDM cosmology. We consider the case where the universe can be highly inhomogeneous, but the gravitatational radiation is treated in the short…

广义相对论与量子宇宙学 · 物理学 2017-10-25 Lydia Bieri , David Garfinkle , Nicolas Yunes

The "memory effect" is the permanent change in the relative separation of test particles resulting from the passage of gravitational radiation. We investigate the memory effect for a general, spatially flat FLRW cosmology by considering the…

广义相对论与量子宇宙学 · 物理学 2016-08-17 Alexander Tolish , Robert M. Wald

Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (freely-falling) gravitational-wave interferometer. Inspiraling binaries produce a particularly interesting form of memory--the Christodoulou…

天体物理学 · 物理学 2014-11-18 Marc Favata

The gravitational memory effect leads to a net displacement in the relative positions of test particles. This memory is related to the change in the strain of the gravitational radiation field between infinite past and infinite future…

广义相对论与量子宇宙学 · 物理学 2016-08-03 Thomas Mädler , Jeffrey Winicour

Gravitational wave memory is said to arise when a gravitational wave burst produces changes in a physical system that persist even after that wave has passed. This paper analyzes gravitational wave bursts in plane wave spacetimes, deriving…

广义相对论与量子宇宙学 · 物理学 2025-01-15 Abraham I. Harte , Thomas B. Mieling , Marius A. Oancea , Elisabeth Steininger

A universal contribution exists in the infrared (low frequency) regime of all gravitational waves, which results from nonlinear memory. Nonlinear memory is sourced by linear order gravitational waves and exists for any gravitational-wave…

广义相对论与量子宇宙学 · 物理学 2025-11-12 Caner Ünal , Doğa Veske

Gravitational waves contain tail effects which are due to the back-scattering of linear waves in the curved space-time geometry around the source. In this paper we improve the knowledge and accuracy of the two-body inspiraling…

广义相对论与量子宇宙学 · 物理学 2015-05-28 Luc Blanchet , Alessandra Buonanno , Guillaume Faye

Gravitational waves from the coalescence of compact objects carry information about their dynamics and the spacetime in regions where they are evolving. In particular, late-time tails and memory effects after the merger are two…

广义相对论与量子宇宙学 · 物理学 2025-08-29 Qassim Alnasheet , Vitor Cardoso , Francisco Duque , Rodrigo Panosso Macedo

The tails of gravitational waves are caused by scattering of linear waves onto the space-time curvature generated by the total mass-energy of the source. Quite naturally, the tails of tails are caused by curvature scattering of the tails of…

广义相对论与量子宇宙学 · 物理学 2011-08-11 Luc Blanchet
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