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Asymptotic analysis of Einstein-{\AE}ther theory and its memory effects: the linearized case

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arxiv 2309.01165 v2 pith:UPTBQBP2 submitted 2023-09-03 gr-qc hep-phhep-th

classification gr-qchep-phhep-th
keywords asymptoticmemoryeffectsmodessymmetriesvectorscalartheory
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This work analyzes the asymptotic behaviors of the asymptotically flat solutions of Einstein-\ae ther theory in the linear case. The vacuum solutions for the tensor, vector, and scalar modes are first obtained, written as sums of various multipolar moments. The suitable coordinate transformations are then determined, and the so-called pseudo-Newman-Unti coordinate systems are constructed for all radiative modes. In these coordinates, it is easy to identify the asymptotic symmetries. It turns out that all three kinds of modes possess the familiar Bondi-Metzner-Sachs symmetries or the extensions as in general relativity. Moreover, there also exist the \emph{subleading} asymptotic symmetries parameterized by a time-independent vector field on a unit 2-sphere. The memory effects are also identified. The tensor gravitational wave also excites similar displacement, spin, and center-of-mass memories to those in general relativity. New memory effects due to the vector and scalar modes exist. The subleading asymptotic symmetry is related to the (leading) vector displacement memory effect, which can be viewed as a linear combination of the electric-type and magnetic-type memory effects. However, the scalar memory effect seems to have nothing to do with the asymptotic symmetries at least in the linearized theory.

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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. Constraining superluminal Einstein-\AE{}ther gravity through gravitational memory

    gr-qc 2025-05 conditional novelty 7.0 of 10

    Tensor displacement memory in Einstein-Aether gravity diverges at a critical angle when aether scalar or vector waves travel faster than tensor gravitational waves, motivating a conjecture excluding superluminal Einst...

  2. Gravitational Memory in Generalized Proca Gravity

    gr-qc 2025-08 conditional novelty 6.0 of 10

    The displacement memory formula for Generalized Proca gravity is derived for a massive Lorentz-invariant branch and a massless Lorentz-violating branch, with the dispersive branch requiring a frequency-integrated treatment.

  3. Gravitational radiations from periodic orbits around Einstein-\AE{}ther black holes

    gr-qc 2025-05 reject novelty 4.0 of 10

    The authors present periodic orbits and quadrupole gravitational waveforms for a test mass around two Einstein-Æther black hole solutions, and claim observable æther-induced waveform changes.

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