Short-range forces due to Lorentz-symmetry violation
arXiv:2210.00605 · doi:10.1088/1361-6382/acb0ab
Abstract
Complementing previous theoretical and experimental work, we explore new types of short-range modifications to Newtonian gravity arising from spacetime-symmetry breaking. The first non-perturbative, i.e., to all orders in coefficients for Lorentz-symmetry breaking, are constructed in the Newtonian limit. We make use of the generic symmetry-breaking terms modifying the gravity sector and examine the isotropic coefficient limit. The results show new kinds of force law corrections, going beyond the standard Yukawa parameterization. Further, there are ranges of the values of the coefficients that could make the resulting forces large compared to the Newtonian prediction at short distances. Experimental signals are discussed for typical test mass arrangements.
33 pages, 8 color figures
References in corpus (44)
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Quantum Gravity at a Lifshitz Point
- Electrodynamics with Lorentz-violating operators of arbitrary dimension
- Signals for Lorentz Violation in Post-Newtonian Gravity
- Matter-gravity couplings and Lorentz violation
- Atom Interferometry tests of the isotropy of post-Newtonian gravity
- Riemann-Finsler geometry and Lorentz-violating kinematics
- New Test of the Gravitational Law at Separations down to 52 m
- Spontaneous Lorentz and Diffeomorphism Violation, Massive Modes, and Gravity
- Prospects for Large Relativity Violations in Matter-Gravity Couplings
- What Do We Know About Lorentz Invariance?
- Review of short-range gravity experiments in the LHC era
- Bipartite Riemann-Finsler geometry and Lorentz violation
- Short-range gravity and Lorentz violation
- Backgrounds in gravitational effective field theory
- Tests of local Lorentz invariance violation of gravity in the standard model extension with pulsars
- Tests of Lorentz symmetry in the gravitational sector
- Signals for Lorentz violation in gravitational waves
- Static spherical vacuum solutions in the bumblebee gravity model
- Limits on Lorentz Violation from Synchrotron and Inverse Compton Sources
- Testing Lorentz symmetry with Lunar Laser Ranging
- Search for Lorentz violation in short-range gravity
- Constraining gravitational wave amplitude birefringence and Chern-Simons gravity with GWTC-2
- Combined search for Lorentz violation in short-range gravity
- Vector models of gravitational Lorentz symmetry breaking
- Combined search for anisotropic birefringence in the gravitational-wave transient catalog GWTC-1
- Search for Lorentz invariance violation through tests of the gravitational inverse square law at short-ranges
- Classical kinematics and Finsler structures for nonminimal Lorentz-violating fermions
- Testing local Lorentz invariance with short-range gravity
- Combined Search for a Lorentz-Violating Force in Short-Range Gravity Varying as the Inverse Sixth Power of Distance
- New limits on the Lorentz/CPT symmetry through fifty gravitational-wave events
- 3+1 Formulation of the Standard-Model Extension Gravity Sector
- Hamiltonian formulation of an effective modified gravity with nondynamical background fields
- Analysis of birefringence and dispersion effects from spacetime-symmetry breaking in gravitational waves
- Searches for beyond-Riemann gravity
- Measuring the Speed of Gravitational Waves from the First and Second Observing Run of Advanced LIGO and Advanced Virgo
- New test of Lorentz invariance using the MICROSCOPE space mission
- Explicit Lorentz violation in a static and spherically-symmetric spacetime
- Modified-gravity theories with nondynamical background fields
- Lorentz symmetry breaking -- classical and quantum aspects
- Velocity-dependent inverse cubic force and solar system gravity tests
- Explicit spacetime-symmetry breaking and the dynamics of primordial fields
- Enhanced sensitivity to Lorentz invariance violations in short-range gravity experiments
- Construction of higher-order metric fluctuation terms in spacetime symmetry-breaking effective field theory