Lindblad and Bloch equations for conversion of a neutron into an antineutron
Abstract
We propose a new approach based on the Lindblad and Bloch equations for the density matrix to the problem of a neutron into an antineutron conversion. We consider three strategies to search for conversion: experiments with trapped neutrons, oscillations in nuclei, and quasi-free propagation. We draw a distinction between oscillations in which the probability that a neutron transforms into an antineutron depends on time according to the sine-square law and the non-oscillatory overdamped conversion. We show that in all three cases decoherence due to the interaction with the environment leads to non-oscillatory evolution.
Keywords
Cite
@article{arxiv.1704.07117,
title = {Lindblad and Bloch equations for conversion of a neutron into an antineutron},
author = {B. O. Kerbikov},
journal= {arXiv preprint arXiv:1704.07117},
year = {2018}
}
Comments
14 pages, 1 figure; v4: the title, the Abstract and Section IV are replaced, new references added, style in some places improved