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Effects of spontaneous Lorentz violation in gravitational waves solutions

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arxiv 1812.04105 v1 pith:WFFQWTCJ submitted 2018-12-10 hep-th

classification hep-th
keywords breakingfieldgravitationalsolutionsconsideringequationlorentzmotion
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Gravitational wave solutions with spontaneous Lorentz symmetry breaking are studied. This breaking is triggered by a vector field, known as the bumblebee field. A brief analysis of the main consequences of this symmetry breaking on free-waves solutions and in the presence of matter sources are presented. For the free case, the modified wave equation for the gravitational perturbation field is solved, and we compare the polarization states with the usual solution. Considering a current that acts as a source of the radiation, we solve the equation of motion using the Green function method. Finally, considering that the source has slow motion, we derive the new quadrupole formula.

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  1. New constraints on modified gravity with dimension-six operators from gravitational waves

    gr-qc 2026-08 conditional novelty 5.0 of 10

    A dimension-six Lorentz-violating gravity operator is linearized to obtain gravitational-wave dispersion relations, and time-of-flight data from GW170817 and GW150914 bound the coefficients to 10^-5 to 10^-4 m^2 (nonb...

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