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Finite density (might well be easier) at finite temperature
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Experiments with imaginary chemical potential and Glasgow method carried out in two interrelated models - four dimensional QCD in the infinite coupling limit, and one dimensional QCD - support the point of view expressed by the title.
Forward citations
Cited by 2 Pith papers
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The Roberge-Weiss endpoint in $(2+1)$-flavor QCD with background magnetic fields
A background magnetic field lowers the Roberge-Weiss temperature in (2+1)-flavor QCD and turns the transition from second to first order between eB=1.0 and 2.5 GeV^2.
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Chemical Potential and Analytic Continuation for Non-Hermitian Lattice Fermions
For a one-dimensional free non-Hermitian lattice fermion, the finite-lattice propagator is analytic in the chemical potential, the infinite-volume/continuum limit can destroy that analyticity, and paired potentials (μ...
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