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arXiv:hep-lat/0002008·v2·High Energy Physics — Lattice

Application of heavy-quark effective theory to lattice QCD: I. Power Corrections

Andreas S. Kronfeld🇺🇸

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Abstract

Heavy-quark effective theory (HQET) is applied to lattice QCD with Wilson fermions at fixed lattice spacing a. This description is possible because heavy-quark symmetries are respected. It is desirable because the ultraviolet cutoff in current numerical work and the heavy-quark mass are comparable. Effects of both short distances, a and , are captured fully into coefficient functions, which multiply the operators of the usual HQET. Standard tools of HQET are used to develop heavy-quark expansions of lattice observables and, thus, to propagate heavy-quark discretization errors. Three explicit examples are given: namely, the mass, decay constant, and semileptonic form factors of heavy-light mesons.

Comments: 41 pp., no figs; Phys Rev D version, improving argument that an HQET holds for all m_Qa

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