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      A Rigourous Treatment of the Lattice Renormalization Problem of F_B

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          Abstract

          The B-meson decay constant can be measured on the lattice using a 1/mb expansion. To relate the physical quantity to Monte Carlo data one has to know the renormalization coefficient, Z, between the lattice operators and their continuum counterparts. We come back to this computation to resolve discrepancies found in previous calculations. We define and discuss in detail the renormalization procedure that allows the (perturbative) computation of Z. Comparing the one-loop calculations in the effective Lagrangian approach with the direct two-loop calculation of the two-point B-meson correlator in the limit of large b-quark mass, we prove that the two schemes give consistent results to order αs. We show that there is, however, a renormalization prescription ambiguity that can have sizeable numerical consequences. This ambiguity can be resolved in the framework of an O(a) improved calculation, and we describe the correct prescription in that case. Finally we give the numerical values of Z that correspond to the different types of lattice approximations discussed in the paper.

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          Perturbative corrections to four-fermion operators on the lattice

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            Journal
            05 August 1992
            Article
            10.1103/PhysRevD.47.1206
            hep-lat/9208004
            0c8bf904-d307-4142-8241-7e54bac87c49
            History
            Custom metadata
            CERN-TH 6599/92
            Phys.Rev.D47:1206-1218,1993
            27 pages, 2 figures (Plain TeX, figures in an appended postscript file)
            hep-lat

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