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Anderson localization in high temperature QCD: background configuration properties and Dirac eigenmodes
- Source :
- Journal of High Energy Physics
- Publication Year :
- 2016
- Publisher :
- Springer Science and Business Media LLC, 2016.
-
Abstract
- We investigate the properties of the background gauge field configurations that act as disorder for the Anderson localization mechanism in the Dirac spectrum of QCD at high temperatures. We compute the eigenmodes of the M\"obius domain-wall fermion operator on configurations generated for the $SU(3)$ gauge theory with two flavors of fermions, in the temperature range $[0.9,1.9]T_c$. We identify the source of localization of the eigenmodes with gauge configurations that are self-dual and support negative fluctuations of the Polyakov loop $P_L$, in the high temperature sea of $P_L\sim 1$. The dependence of these observations on the boundary conditions of the valence operator is studied. We also investigate the spatial overlap of the left-handed and right-handed projected eigenmodes in correlation with the localization and the corresponding eigenvalue. We discuss an interpretation of the results in terms of monopole-instanton structures.<br />Comment: 27 pages, 16 figures, 2 tables, minor corrections and typos
- Subjects :
- High Energy Physics - Theory
Nuclear and High Energy Physics
Instanton
Anderson localization
High Energy Physics::Lattice
FOS: Physical sciences
Dirac spectrum
01 natural sciences
High Energy Physics - Phenomenology (hep-ph)
High Energy Physics - Lattice
0103 physical sciences
Boundary value problem
Gauge theory
010306 general physics
Condensed Matter - Statistical Mechanics
Quantum chromodynamics
Physics
Statistical Mechanics (cond-mat.stat-mech)
010308 nuclear & particles physics
High Energy Physics - Lattice (hep-lat)
Disordered Systems and Neural Networks (cond-mat.dis-nn)
Fermion
Lattice QCD
Condensed Matter - Disordered Systems and Neural Networks
High Energy Physics - Phenomenology
High Energy Physics - Theory (hep-th)
Quantum electrodynamics
Subjects
Details
- ISSN :
- 10298479
- Volume :
- 2016
- Database :
- OpenAIRE
- Journal :
- Journal of High Energy Physics
- Accession number :
- edsair.doi.dedup.....f7b26793b2475552e8af81839ed98401
- Full Text :
- https://doi.org/10.1007/jhep06(2016)056