Very special relativity as relativity of dark matter: the Elko connection
arXiv:1008.0436 · doi:10.1007/JHEP11(2010)078
Abstract
In the very special relativity (VSR) proposal by Cohen and Glashow, it was pointed out that invariance under HOM(2) is both necessary and sufficient to explain the null result of the Michelson-Morely experiment. It is the quantum field theoretic demand of locality, or the requirement of P, T, CP, or CT invariance, that makes invariance under the Lorentz group a necessity. Originally it was conjectured that VSR operates at the Planck scale; we propose that the natural arena for VSR is at energies similar to the standard model, but in the dark sector. To this end we provide an ab initio spinor representation invariant under the SIM(2) avatar of VSR and construct a mass dimension one fermionic quantum field of spin one half. This field turns out to be a very close sibling of Elko and it exhibits the same striking property of intrinsic darkness with respect to the standard model fields. In the new construct, the tension between Elko and Lorentz symmetries is fully resolved. We thus entertain the possibility that the symmetries underlying the standard model matter and gauge fields are those of Lorentz, while the event space underlying the dark matter and the dark gauge fields supports the algebraic structure underlying VSR.
19 pages. Section 5 is new. Published version (modulo a footnote, and a corrected typo)
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Cited by in corpus (23)
- Classification of Singular Spinor Fields and Other Mass Dimension One Fermions
- Dynamical dispersion relation for ELKO dark spinor fields
- Exotic Dark Spinor Fields
- Hawking Radiation from Elko Particles Tunnelling across Black Strings Horizon
- Bilinear Covariants and Spinor Fields Duality in Quantum Clifford Algebras
- Solutions to the problem of ELKO spinor localization in brane models
- On the bilinear covariants associated to mass dimension one spinors
- Mass dimension one fermions: Constructing darkness
- Questing for Algebraic Mass Dimension One Spinor Fields
- ELKO and Dirac Spinors seen from Torsion
- Elko and mass dimension one field of spin one half: causality and Fermi statistics
- Dirac equation in very special relativity for hydrogen atom
- Lorentz Violating -form Gauge Theories in Superspace
- Renormalization of Very Special Relativity gauge theories
- On the axial anomaly in Very Special Relativity
- Lorentz Violation in Finsler Geometry
- The Heisenberg spinor field classification and its interplay with the Lounesto's classification
- Non-standard Dirac equations for non-standard spinors
- Carroll spinors
- Generalized Elko Theory
- Vacuum polarization and induced Maxwell and Kalb-Ramond effective action in very special relativity
- Exploiting new classes of mass-dimension one fermions
- Infrared Regularization of Very Special Relativity Models