Derives FRG flow equations for antisymmetric tensor field models at finite temperature under SU(n) to USp(n) and SO(n) to SU(n/2) symmetry breaking.
Functional renormalization group equations for antisymmetric tensor field models at finite temperature
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abstract
Within the framework of the functional renormalization group, we derived the flow equations for the scale-dependent effective action at finite temperature for models involving an antisymmetric rank-2 tensor field. The analysis focuses on scenarios where the vacuum expectation value emerges due to symmetry breaking patterns, specifically $SU(n) \to USp(n)$ and $SO(n) \to SU(n/2)$. The derived equations provide insights into the behavior of these models under varying scales and temperatures, contributing to the understanding of phase transitions in systems with complex symmetry structures.
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Functional renormalization group equations for antisymmetric tensor field models at finite temperature
Derives FRG flow equations for antisymmetric tensor field models at finite temperature under SU(n) to USp(n) and SO(n) to SU(n/2) symmetry breaking.