An alternative approach concerning Elko spinors and the hidden unitarity
arXiv:1705.10302 · doi:10.1007/s00006-019-0988-6
Abstract
In this theoretical communication we look towards understand the underlying phenomenology concerning the Elko spinors within VSR theory. The program to be accomplished here start when we define the eigenspinors of the charge conjugation operator as eigenstates of the helicity operator in the Cartesian coordinates system. This prescription is very useful in the sense of phenomenological point of view, so, we propose a set of Elko spinors ready to be computationally implemented. Regardless of, in order to show the application of given approach we impose to these spinors to be restrict to an axis, coincidentally the axis of locality, and then, using the proposed prescription, we search for physical amounts and physical processes by analysing the Yukawa and the self-interaction in such framework.
10 pages, 2 figures. Accepted for publication in AACA
References in corpus (15)
- Very Special Relativity
- From Dirac spinor fields to ELKO
- Very special relativity as relativity of dark matter: the Elko connection
- From Dirac Action to ELKO Action
- SIM(2)-invariant Modifications of Electrodynamic Theory
- On the bilinear covariants associated to mass dimension one spinors
- Electroweak standard model with very special relativity
- Constraining Elko Dark Matter at the LHC with Monophoton Events
- On the photon mass in Very Special Relativity
- Dark matter, and its darkness
- A invariant dimensional regularization
- Axion Mass Bound in Very Special Relativity
- Helicity -- from Clifford to Graphene
- Inferring the covariant -exact noncommutative coupling in the top quark pair production at linear colliders
- Type-4 spinors: transmuting from Elko to single-helicity spinors