We introduce a new parameterization of four-fermion matrix elements which does not involve quark masses and thus allows a reduction of systematic uncertainties in physical amplitudes. As a result the apparent quadratic dependence of e'/e on m_s is removed. To simplify the matching between lattice and continuum renormalization schemes, we express our results in terms of Renormalization Group Invariant B-parameters which are renormalization-scheme and scale independent. As an application of our proposal, matrix elements of DeltaI=3/2 and SUSY DeltaF=2 ($F=S,C,B$) four-fermion operators have been computed

Donini, A., Gimenez, V., Giusti, L., Martinelli, G. (2000). Matrix elements without quark masses on the lattice. NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 83-84, 238-240 [10.1016/S0920-5632(00)91634-7].

Matrix elements without quark masses on the lattice

GIUSTI, LEONARDO;
2000

Abstract

We introduce a new parameterization of four-fermion matrix elements which does not involve quark masses and thus allows a reduction of systematic uncertainties in physical amplitudes. As a result the apparent quadratic dependence of e'/e on m_s is removed. To simplify the matching between lattice and continuum renormalization schemes, we express our results in terms of Renormalization Group Invariant B-parameters which are renormalization-scheme and scale independent. As an application of our proposal, matrix elements of DeltaI=3/2 and SUSY DeltaF=2 ($F=S,C,B$) four-fermion operators have been computed
Articolo in rivista - Articolo scientifico
Kaon decays, B decays, lattice, QCD
English
2000
83-84
238
240
none
Donini, A., Gimenez, V., Giusti, L., Martinelli, G. (2000). Matrix elements without quark masses on the lattice. NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 83-84, 238-240 [10.1016/S0920-5632(00)91634-7].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/24753
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