English

How to construct self/anti-self charge conjugate states for higher spins?

Mathematical Physics 2015-06-11 v1 High Energy Physics - Phenomenology High Energy Physics - Theory math.MP

Abstract

We construct self/anti-self charge conjugate (Majorana-like) states for the (1/2, 0)+(0, 1/2) representation of the Lorentz group, and their analogs for higher spins within the quantum field theory. The problem of the basis rotations and that of the selection of phases in the Dirac-like and Majorana-like field operators are considered. The discrete symmetries properties (P, C, T) are studied. The corresponding dynamical equations are presented. In the (1/2, 0)+(0, 1/2) representation they obey the Dirac-like equation with eight components, which has been first introduced by Markov. Thus, the Fock space for corresponding quantum fields is doubled (as shown by Ziino). The particular attention has been paid to the questions of chirality and helicity (two concepts which are frequently confused in the literature) for Dirac and Majorana states. We further review several experimental consequences which follow from the previous works of M.Kirchbach et al. on neutrinoless double beta decay, and G.J.Ni et al. on meson lifetimes.

Keywords

Cite

@article{arxiv.1210.4401,
  title  = {How to construct self/anti-self charge conjugate states for higher spins?},
  author = {Valeriy V. Dvoeglazov},
  journal= {arXiv preprint arXiv:1210.4401},
  year   = {2015}
}

Comments

9 pages. The paper based on the talks given at the "Beauty in Physics" (Cocoyoc, Mexico, May 2012), PASCOS2012 (Merida, Mexico, June 2012), WGMP-XXXI (Bialowieza, Poland, June 2012). To be published in the AIP Proceedings