Collective neutrino oscillations and spontaneous symmetry breaking
Abstract
Neutrino oscillations in a hot and dense astrophysical environment such as a core-collapse supernova pose a challenging, seven-dimensional flavor transport problem. To make the problem even more difficult (and interesting), neutrinos can experience collective oscillations through nonlinear refraction in the dense neutrino medium in this environment. Significant progress has been made in the last decade towards the understanding of collective neutrino oscillations in various simplified neutrino gas models with imposed symmetries and reduced dimensions. However, a series of recent studies seem to have "reset" this progress by showing that these models may not be compatible with collective neutrino oscillations because the latter can break the symmetries spontaneously if they are not imposed. We review some of the key concepts of collective neutrino oscillations by using a few simple toy models. We also elucidate the breaking of spatial and directional symmetries in these models because of collective oscillations.
- Publication:
-
International Journal of Modern Physics E
- Pub Date:
- August 2015
- DOI:
- 10.1142/S0218301315410086
- arXiv:
- arXiv:1506.08629
- Bibcode:
- 2015IJMPE..2441008D
- Keywords:
-
- Collective neutrino oscillations;
- spontaneous symmetry breaking;
- core-collapse supernova;
- 14.60.Pq;
- 97.60.Bw;
- Neutrino mass and mixing;
- Supernovae;
- High Energy Physics - Phenomenology;
- Astrophysics - High Energy Astrophysical Phenomena;
- Nuclear Theory
- E-Print:
- 18 pages, 4 figures