Gravity, Lorentz violation, and the standard model
Loading...
Can’t use the file because of accessibility barriers? Contact us with the title of the item, permanent link, and specifics of your accommodation need.
Date
2004
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
American Physical Society
Permanent Link
Abstract
The role of the gravitational sector in the Lorentz- and CPT-violating standard-model extension (SME) is studied. A framework is developed for addressing this topic in the context of Riemann-Cartan spacetimes, which include as limiting cases the usual Riemann and Minkowski geometries. The methodology is first illustrated in the context of the QED extension in a Riemann-Cartan background. The full SME in this background is then considered, and the leading-order terms in the SME action involving operators of mass dimension three and four are constructed. The incorporation of arbitrary Lorentz and CPT violation into general relativity and other theories of gravity based on Riemann-Cartan geometries is discussed. The dominant terms in the effective low-energy action for the gravitational sector are provided, thereby completing the formulation of the leading-order terms in the SME with gravity. Explicit Lorentz symmetry breaking is found to be incompatible with generic Riemann-Cartan geometries, but spontaneous Lorentz breaking evades this difficulty.
Description
Keywords
Citation
Kostelecký, V. A. (2004). Gravity, Lorentz violation, and the standard model. Physical Review D, 69(10), 105009. http://dx.doi.org/10.1103/PhysRevD.69.105009
Journal
DOI
Link(s) to data and video for this item
Relation
Rights
© 2004 American Physical Society.
Type
Article