Least-Order Torsion-Gravity for Chiral-Spinor Fields, induced Self-Interacting Potentials and Parity Conservation
arXiv:1307.4632 · doi:10.1007/s10714-013-1663-1
Abstract
We will consider the most general least-order derivative action for the torsional completion of gravitational backgrounds filled with left-handed and right-handed semi-spinorial fields, accounting for all parity-even as well as parity-odd contributions; we will proceed by performing the customary analysis, decomposing torsion and substituting it in terms of the semi-spinorial density currents, in order to obtain the effective action with the torsionally-induced self-interacting potentials among the chiral fermionic fields: we shall see that the resulting effective non-linear potentials will turn eventually out to be parity conserving after all.
7 pages
References in corpus (1)
Cited by in corpus (10)
- A generally-relativistic gauge classification of the Dirac fields
- A discussion on the most general torsion-gravity with electrodynamics for Dirac spinor matter fields
- Torsion Gravity for Dirac Fields
- Renormalizability of the Dirac Equation in Torsion-Gravity with Non-Minimal Coupling
- Fundamental Theory of Torsion Gravity
- A torsional completion of gravity for Dirac matter fields and its applications to neutrino oscillations
- The role of singular spinor fields in a torsional gravity, Lorentz-violating, framework
- Least-Order Torsion-Gravity for Dirac Fields, and their Non-Linearity terms
- A simple assessment on the hierarchy problem
- A simple assessment on inflation