Antimatter-Gravity Couplings, and Lorentz Symmetry
arXiv:1501.06877 · doi:10.1007/s10751-014-1069-9
Abstract
Implications of possible CPT and Lorentz violation for antimatter-gravity experiments as well as other antimatter tests are considered in the context of the general field-theory-based framework of the Standard-Model Extension (SME).
10 pages, Presented at the 11th International Conference on Low Energy Antiproton Physics (LEAP2013) held in Uppsala, Sweden, 10-15 June 2013
References in corpus (20)
- 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
- Prospects for Large Relativity Violations in Matter-Gravity Couplings
- Testing for Lorentz Violation: Constraints on Standard-Model Extension Parameters via Lunar Laser Ranging
- Gauge Invariance and the Pauli-Villars Regulator in Lorentz- and CPT-Violating Electrodynamics
- Classical kinematics for Lorentz violation
- Weighted power counting and Lorentz violating gauge theories. I: General properties
- Failure of Gauge Invariance in the Nonperturbative Formulation of Massless Lorentz-Violating QED
- Weighted power counting and Lorentz violating gauge theories. II: Classification
- One-Loop Renormalization of Pure Yang-Mills with Lorentz Violation
- One-Loop Renormalization of the Electroweak Sector with Lorentz Violation
- One-Loop Renormalization of QCD with Lorentz Violation
- On the renormalization of CPT/Lorentz violating QED in curved space
- On the ambiguities in the effective action in Lorentz-violating gravity
- Chiral Anomaly Beyond Lorentz Invariance
- Testing non-classical theories of electromagnetism with ion interferometry
- Testing Gravity with Muonium