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Towards a Relativistic KMS Condition
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It is shown that, under quite general conditions, thermal correlation functions in relativistic quantum field theory have stronger analyticity properties in configuration space than those imposed by the KMS-condition. These analyticity properties may be understood as a remnant of the relativistic spectrum condition in the vacuum sector and lead to a Lorentz-covariant formulation of the KMS-condition involving all space-time variables.
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Cited by 2 Pith papers
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Emergent chiral spin symmetry, non-perturbative dynamics and thermoparticles in hot QCD
Lattice data indicate hot QCD features an intermediate phase with emergent chiral spin symmetry and thermoparticles as thermal constituents, differing from perturbative expectations.
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Spectral properties of pseudo-scalar mesons through the QCD chiral crossover
Thermal meson spectral functions near the QCD chiral crossover can be described by broadened vacuum pion and kaon states with negligible continuum contributions.
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