Torsion Gravity for Dirac Particles
arXiv:1611.08474 · doi:10.1142/S0219887817501274
Abstract
In this paper we consider torsion gravity in the case of the Dirac field, and by going into the rest frame we study what happens when a uniform precession as well as a phase are taken into account for the spinor field; we discuss how partially conserved axial-vector currents and torsion-spin attractive potentials justify negative Takabayashi angle and energy smaller than mass: because in this instance the module goes to zero exponentially fast then we obtain stable and localized matter distributions suitable to be regarded as a description of particles.
5 pages
References in corpus (2)
Cited by in corpus (4)
- The commutator algebra of covariant derivative as general framework for extended gravity. The Rastall theory case and the role of the torsion
- General Dynamics of Spinors
- Polar solutions with tensorial connection of the spinor equation
- Torsion Axial Vector and Yvon-Takabayashi Angle: Zitterbewegung, Chirality and all that