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The Yang-Mills gradient flow in finite volume

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arxiv 1208.1051 v2 pith:TKX3U4KC submitted 2012-08-05 hep-lat

The Yang-Mills gradient flow in finite volume

classification hep-lat
keywords gaugevolumecouplingflowresultcontinuumcoupledfermions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The Yang-Mills gradient flow is considered on the four dimensional torus T^4 for SU(N) gauge theory coupled to N_f flavors of massless fermions in arbitrary representations. The small volume dynamics is dominated by the constant gauge fields. The expectation value of the field strength tensor squared is calculated for positive flow time t by treating the non-zero gauge modes perturbatively and the zero modes exactly. The finite volume correction to the infinite volume result is found to contain both algebraic and exponential terms. The leading order result is then used to define a one parameter family of running coupling schemes in which the coupling runs with the linear size of the box. The new scheme is tested numerically in SU(3) gauge theory coupled to N_f = 4 flavors of massless fundamental fermions. The calculations are performed at several lattice spacings with a controlled continuum extrapolation. The continuum result agrees with the perturbative 2-loop prediction for small renormalized coupling as expected.

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