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Transport coefficients of O(N) scalar field theories close to the critical point

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arxiv 1109.6822 v2 pith:62LXMR3U submitted 2011-09-30 hep-ph nucl-th

classification hep-phnucl-th
keywords criticalfielddynamicsscalarsymmetriccoefficientsfindfinite
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We investigate the critical dynamics of O(N)-symmetric scalar field theories to determine the critical exponents of transport coefficients as a second-order phase transition is approached from the symmetric phase. A set of stochastic equations of motion for the slow modes is formulated, and the long wavelength dynamics is examined for an arbitrary number of field components, $N$, in the framework of the dynamical renormalization group within the $\epsilon$ expansion. We find that for a single component scalar field theory, N=1, the system reduces to the model C of critical dynamics, whereas for $N>1$ the model G is effectively restored owing to dominance of O(N)-symmetric charge fluctuations. In both cases, the shear viscosity remains finite in the critical region. On the other hand, we find that the bulk viscosity diverges as the correlation length squared, for N=1, while it remains finite for $N>1$.

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  1. Tricritical dynamics in $\mathrm{^3He}$-$\mathrm{^4He}$ mixtures and QCD

    hep-ph 2026-08 conditional novelty 7.0 of 10

    Near tricritical points with an extra conserved energy-like density, order parameter and conserved O(N) charges exhibit strong scaling z=3/2, while the energy-like density is subdiffusive with z=3.

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