Isotensor Hadronic Parity Violation
arXiv:1207.4996 · doi:10.1103/PhysRevD.86.097501
Abstract
Weak interactions between quarks give rise to hadronic parity violation which can be observed in nuclear and few-nucleon systems. We study the QCD renormalization of the isotensor component of parity violation at next-to-leading order accuracy. The renormalization group is employed to evolve the interaction down to hadronic scales. As the results are renormalization scheme dependent, we compare various schemes, including 't Hooft-Veltman dimensional regularization, and several regularization independent-momentum subtraction schemes.
4 pages, 2 figures, brief report, v2. version to be published
References in corpus (9)
- Non-perturbative renormalization of quark bilinear operators and B_K using domain wall fermions
- Continuum Limit of from 2+1 Flavor Domain Wall QCD
- An effective-field-theory analysis of low-energy parity-violation in nucleon-nucleon scattering
- On a redundancy in the parity-violating 2-nucleon contact Lagrangian
- Lattice QCD Calculation of Nuclear Parity Violation
- Parity-violating neutron spin rotation in hydrogen and deuterium
- Matching factors for Delta S=1 four-quark operators in RI/SMOM schemes
- Parity Violation in nd Interactions
- Hadronic Parity Violation at Next-to-Leading Order
Cited by in corpus (7)
- Nuclear matrix elements from lattice QCD for electroweak and beyond-Standard-Model processes
- The Theory of Parity Violation in Few-Nucleon Systems
- A New Paradigm for Hadronic Parity Nonconservation and its Experimental Implications
- Towards a unified treatment of parity violation in low-energy nuclear processes
- QCD Analysis of Hadronic Parity Violation
- Large- and renormalization group constraints on parity-violating low-energy coefficients for three-derivative operators in pionless effective field theory
- Hadronic Parity Violation in Next-to-Leading Order QCD: Anomalous Dimension Matrices and Their Implications