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Perturbative determination of mass dependent O (a) improvement coefficients for the vector and axial vector currents with a relativistic heavy quark action

机译:具有相对论重夸克作用的矢量和轴向矢量电流的质量相关O(a)改进系数的摄动确定

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We carry out a perturbative determination of mass dependent renormalization factors and O (a) improvement coefficients for the vector and axial vector currents with a relativistic heavy quark action, which we have designed to control mQa errors by extending the on-shell O (a) improvement program to the case of m(Q) much greater than A(QCD) with m(Q) the heavy quark mass. We discuss what kind of improvement operators are required for the heavy-heavy and the heavy-light cases under the condition that the Euclidean rotational symmetry is not retained anymore because of the m(Q)a corrections. Our calculation is performed employing the ordinary perturbation theory with the fictitious gluon mass as an infrared regulator. We show that all the improvement coefficients are determined free from infrared divergences. Results of the renormalization factors and the improvement coefficients are presented as a function of mQa for various improved gauge actions as well as the plaquette action. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们用相对论重夸克作用对矢量和轴向矢量电流进行质量相关的重归一化因子和O(a)改进系数的微扰确定,我们设计了该函数,通过扩展壳上O(a)来控制mQa误差m(Q)大于m(Q)重夸克质量的A(QCD)的改进程序。我们讨论了在由于m(Q)a校正而不再保留欧几里得旋转对称性的情况下,对于重负载和重负载情况需要哪种改进运算符。我们的计算是使用普通的扰动理论以虚拟胶子质量作为红外调节器进行的。我们表明,所有改进系数的确定均不受红外发散的影响。归一化因子和改进系数的结果作为mQa的函数呈现,用于各种改进的轨距作用以及球拍作用。 (C)2004 Elsevier B.V.保留所有权利。

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