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Low energy properties of SU(2) gauge theory with N_f = 3/2 flavours of adjoint fermions

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arxiv 1712.04692 v1 pith:XTCWO4HC submitted 2017-12-13 hep-lat

Low energy properties of SU(2) gauge theory with N_f = 3/2 flavours of adjoint fermions

classification hep-lat
keywords gaugescalingfermionsmassmassestheoryadjointbound
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work we present the results of a numerical investigation of SU(2) gauge theory with N_f = 3/2 flavours of fermions, corresponding to 3 Majorana fermions, which transform in the adjoint representation of the gauge group. At two values of the gauge coupling, the masses of bound states are considered as a function of the fundamental fermion mass, represented by the PCAC quark mass. The scaling of bound states masses indicates an infrared conformal behaviour of the theory. We obtain estimates for the fixed-point value of the mass anomalous dimension $\gamma^{\ast}$ from the scaling of masses and from the scaling of the mode number of the Wilson-Dirac operator. The difference of the estimates at the two gauge couplings should be due to scaling violations and lattice spacing effects. The more reliable estimate at the smaller gauge coupling is $\gamma^{\ast} \approx 0.38(2)$.

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Cited by 2 Pith papers

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  2. SU(2) gauge theory with one and two adjoint fermions towards the continuum limit

    hep-lat 2024-07 unverdicted novelty 5.0

    Extended lattice simulations yield continuum-limit anomalous dimensions γ* = 0.170(6) for Nf=1 and γ* = 0.291(9) for Nf=2 adjoint SU(2), with chiral perturbation theory ruling out spontaneous chiral symmetry breaking.