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The Polarizations of Gravitational Waves

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arxiv 1806.04027 v1 pith:GVWZYPWH submitted 2018-06-11 gr-qc

classification gr-qc
keywords polarizationsgravitytheoryhorndeskitheoriescannotcontentsemph
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abstract

The direct detection of gravitational waves by LIGO/Virgo opened the possibility to test General Relativity and its alternatives in the high speed, strong field regime. Alternative theories of gravity generally predict more polarizations than General Relativity, so it is important to study the polarization contents of theories of gravity to reveal the nature of gravity. In this talk, we analyzed the polarizations contents of Horndeski theory and $f(R)$ gravity. We found out that in addition to the familiar plus and cross polarizations, a \emph{massless} Horndeski theory predicts an extra transverse polarization, and there is a mix of the pure longitudinal and transverse breathing polarizations in the \emph{massive} Horndeski theory and $f(R)$ gravity. It is possible to use pulsar timing arrays to detect the extra polarizations in these theories. We also pointed out that the classification of polarizations using Newman-Penrose variables cannot be applied to the massive modes. It cannot be used to classify polarizations in Einstein-\ae ther theory or generalized TeVeS theory, either.

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

  1. Test Gravitational-Wave Polarizations with Space-Based Detectors

    gr-qc 2025-06 conditional novelty 5.0 of 10

    Space-based detector simulations reveal a small asymmetry in vector-mode parameter estimation between inclination angles 0 and π, and persistent degeneracy between the two scalar modes.

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