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Solution of the complex action problem in the Potts model for dense QCD
M. Alford
, S. Chandrasekharan
, J. Cox
, U. J. Wiese
Department of Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
76
Scopus citations
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Dive into the research topics of 'Solution of the complex action problem in the Potts model for dense QCD'. Together they form a unique fingerprint.
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Keyphrases
Complex Action
100%
Potts Model
100%
Dense QCD
100%
Action Difficulty
100%
Quark
75%
Deconfinement Phase Transition
50%
First-order
25%
Transition Line
25%
Monte Carlo Simulation
25%
Clustering Algorithm
25%
Three-state
25%
SU(3)
25%
Qualitative Features
25%
Chemical Potential
25%
Importance Sampling
25%
Ising
25%
Boltzmann Factor
25%
Symmetry Property
25%
Quark-antiquark
25%
Improved Estimator
25%
Lattice QCD
25%
Polyakov Loop
25%
Non-zero Baryon Density
25%
Baryon Chemical Potential
25%
Yang-Mills Theory
25%
Mathematics
chemical potential μ
100%
Lattices
50%
Importance Sampling
50%
Boltzmann Factor
50%
Symmetry Property
50%
Dependent Part
50%
Monte Carlo Method
50%
Physics
Quantum Chromodynamics
100%
Pott Model
100%
Baryon
33%
Monte Carlo Method
33%
Baryon Density
33%
Yang-Mills Theory
33%