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The nucleon mass in N_f=2 lattice QCD: finite size effects from chiral perturbation theory

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arxiv hep-lat/0312030 v3 pith:LNI6QUY6 submitted 2003-12-18 hep-lat hep-ph

classification hep-lathep-ph
keywords massfinitechiraldatanucleonperturbationsizetheory
verification ladder T0 review T1 audit T2 compute T3 formal
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In the framework of relativistic SU(2)_f baryon chiral perturbation theory we calculate the volume dependence of the nucleon mass up to and including O(p^4). Since the parameters in the resulting finite size formulae are fixed from the pion mass dependence of the large volume nucleon masses and from phenomenology, we obtain a parameter-free prediction of the finite size effects. We present mass data from the recent N_f=2 simulations of the UKQCD and QCDSF collaborations and compare these data as well as published mass values from the dynamical simulations of the CP-PACS and JLQCD collaborations with the theoretical expectations. Remarkable agreement between the lattice data and the predictions of chiral perturbation theory in a finite volume is found.

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  1. Nucleon and singly heavy baryons from the QCD instanton vacuum

    hep-ph 2025-01 conditional novelty 5.0 of 10

    A chiral soliton model with a momentum-dependent quark mass from the instanton vacuum predicts Delta-N and Sigma_Q-Lambda_Q mass splittings of 214 and 206 MeV.

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