Fate of in-medium heavy quarks via a Lindblad equation
Abstract
What is the dynamics of heavy quarks and antiquarks in a quark gluon plasma? Can heavy-quark bound states dissociate? Can they (re)combine? These questions are addressed by investigating a Lindblad equation that describes the quantum dynamics of the heavy quarks in a medium. The Lindblad equations for a heavy quark and a heavy quark-antiquark pair are derived from the gauge theory, following a chain of well-defined approximations. In this work the case of an abelian plasma has been considered, but the extension to the non-abelian case is feasible. A one-dimensional simulation of the Lindblad equation is performed to extract information about bound-state dissociation, recombination and quantum decoherence for a heavy quark-antiquark pair. All these phenomena are found to depend strongly on the imaginary part of the inter-quark potential.
Keywords
Cite
@article{arxiv.1705.03567,
title = {Fate of in-medium heavy quarks via a Lindblad equation},
author = {Davide De Boni},
journal= {arXiv preprint arXiv:1705.03567},
year = {2017}
}
Comments
50 pages, 10 figures - added references - corrected typos and added a few comments - added appendix D