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arXiv:0902.1074·v1·High Energy Physics — Lattice

Quenched -parameter from Osterwalder-Seiler tmQCD quarks and mass-splitting discretization effects

P. Dimopoulos🇮🇹 · H. Simma🇮🇹 · A. Vladikas🇮🇹

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Abstract

We apply an Osterwalder-Seiler version of twisted mass QCD to a study of the parameter, in which three of the four quark fields making up the relevant operator are maximally twisted with the same twist angle, while the fourth one has a twist angle of opposite sign. It is known that this setup ensures automatic improvement of the bare - operator matrix element and multiplicative renormalization of the operator, at the price of breaking the - mass degeneracy by discretization effects. As a result, two dominant systematic errors of the determination with Wilson fermions are kept under control. With the Clover term included in the fermion action, we perform a feasibility study and find, in the quenched approximation, a significant improvement of the scaling behaviour of , compared to earlier standard tmQCD determinations. Moreover, we study in detail the - mass splitting that characterizes this approach and confirm that, in the presence of the Clover term, it is greatly reduced in a maximally twisted theory.

Comments: 18 pages, 4 figures

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