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Searches for beyond-Riemann gravity

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arxiv 2106.11293 v2 pith:NRC4QSZB submitted 2021-06-21 gr-qc hep-ph

classification gr-qchep-ph
keywords gravitationalgravitydescribingfermionsgeometryincludeinvariancesome
verification ladder T0 review T1 audit T2 compute T3 formal
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Many effective field theories describing gravity cannot arise from an underlying theory based on Riemann geometry or its extensions to include torsion and nonmetricity but may instead emerge from another geometry or may have a nongeometric basis. The Lagrange density for a broad class of such theories is investigated. The action for fermions coupled to gravity is linearized about a Minkowski background and is found to include terms describing small deviations from Lorentz invariance and gravitational gauge invariance. The corresponding nonrelativistic hamiltonian is derived at second order in the fermion momentum. The implications for laboratory experiments and astrophysical observations with fermions are studied, with primary focus on anomalous spin-gravity couplings. First constraints on some coefficients are extracted from existing data obtained via measurements at different potentials, comparisons of gravitational accelerations, interferometric methods, and investigations of gravitational bound states. Some prospects for future experimental studies are discussed.

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  1. Perturbative black-hole and horizon solutions in gravity with explicit spacetime-symmetry breaking

    gr-qc 2024-11 conditional novelty 6.0 of 10

    New perturbative black hole solutions in an explicit spacetime-symmetry-breaking gravity EFT, with derived observables including three-horizon metrics when two coefficients are active.

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