Published May 2005 | Version v1
Report

A perturbative study of two four-quark operators in finite volume renormalization schemes

  • 1. European Lab. for Particle Physics (CERN), Geneva (Switzerland)
  • 2. Universidad Autonoma de Madrid (Spain). Dept. de Fisica Teorica C-XI

Description

Starting from the QCD Schroedinger functional (SF), we define a family of renormalization schemes for two four-quark operators, which are, in the chiral limit, protected against mixing with other operators. With the appropriate flavour assignments these operators can be interpreted as part of either the ΔF = 1 or ΔF = 2 effective weak Hamiltonians. In view of lattice QCD with Wilson-type quarks, we focus on the parity odd components of the operators, since these are multiplicatively renormalized both on the lattice and in continuum schemes. We consider 9 different SF schemes and relate them to commonly used continuum schemes at one-loop order of perturbation theory. In this way the two-loop anomalous dimensions in the SF schemes can be inferred. As a by-product of our calculation we also obtain the one-loop cutoff effects in the step-scaling functions of the respective renormalization constants, for both O(a) improved and unimproved Wilson quarks. Our results will be needed in a separate study of the non-perturbative scale evolution of these operators. (orig.)

Availability note (English)

Available from TIB Hannover: RA 2999(05-070)

Additional details

Publishing Information

Imprint Pagination
22 p.
ISSN
0418-9833
Report number
DESY--05-070