Physical Results from Partially Quenched Simulation
arXiv:hep-lat/0011089 · doi:10.1142/S0217751X01009363
Abstract
We describe how one can use chiral perturbation theory to obtain results for physical quantities, such as quark masses, using partially quenched simulations.
Written version of two talks at DPF 2000. 6 pages, 2 figures
References in corpus (3)
Cited by in corpus (18)
- Nucleon Masses and Magnetic Moments in a Finite Volume
- Nucleons in Two-Flavor Partially-Quenched Chiral Perturbation Theory
- Electromagnetic and spin polarisabilities in lattice QCD
- Octet Baryon Masses in Partially Quenched Chiral Perturbation Theory
- Decuplet Baryon Masses in Partially Quenched Chiral Perturbation Theory
- Charge Radii of the Meson and Baryon Octets in Quenched and Partially Quenched Chiral Perturbation Theory
- Baryon Decuplet to Octet Electromagnetic Transitions in Quenched and Partially Quenched Chiral Perturbation Theory
- Electromagnetic Properties of the Baryon Decuplet in Quenched and Partially Quenched Chiral Perturbation Theory
- Hadronic Parity-Violation on the Lattice
- Partially-Quenched Nucleon-Nucleon Scattering
- Extrapolation Formulas for Neutron EDM Calculations in Lattice QCD
- The Chiral Extrapolation of Strange Matrix Elements in the Nucleon
- Hadronic Electromagnetic Properties at Finite Lattice Spacing
- Connecting the Quenched and Unquenched Worlds via the Large N_c World
- Topics in Effective Field Theory for Lattice QCD
- Baryons in Partially-Quenched Chiral Perturbation Theory
- Chiral Perturbation Theory on the Lattice and its Applications
- Current Physics Results from Staggered Chiral Perturbation Theory