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Spontaneous Lorentz Violation and the Long-Range Gravitational Preferred-Frame Effect

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abstract

Lorentz-violating operators involving Standard Model fields are tightly constrained by experimental data. However, bounds are more model-independent for Lorentz violation appearing in purely gravitational couplings. The spontaneous breaking of Lorentz invariance by the vacuum expectation value of a vector field selects a universal rest frame. This affects the propagation of the graviton, leading to a modification of Newton's law of gravity. We compute the size of the long-range preferred-frame effect in terms of the coefficients of the two-derivative operators in the low-energy effective theory that involves only the graviton and the Goldstone bosons.

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gr-qc 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Gravitational Memory in Generalized Proca Gravity

gr-qc · 2025-08-28 · conditional · novelty 6.0

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.

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  • Gravitational Memory in Generalized Proca Gravity gr-qc · 2025-08-28 · conditional · none · ref 65 · internal anchor

    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.