Numerical simulation of dynamical gluinos: experience with a multi-bosonic algorithm and first results
arXiv:hep-lat/9808024 · doi:10.1016/S0920-5632(99)85216-5
Abstract
We report on our experience with the two-step multi-bosonic algorithm in a large scale Monte Carlo simulation of the SU(2) Yang-Mills theory with dynamical gluinos. First results are described on the low lying spectrum of bound states, the string tension and the gluino condensate.
LATTICE98(algorithms), latex using espcrc2.sty, 6 pages, 7 figures
References in corpus (6)
Cited by in corpus (12)
- Supersymmetric Yang-Mills theory on the lattice
- Progress in four-dimensional lattice supersymmetry
- Polynomial Hybrid Monte Carlo algorithm for lattice QCD with an odd number of flavors
- One loop calculation of SUSY Ward-Takahashi identity on lattice with Wilson fermion
- Lattice four-dimensional N=4 SYM is practical
- Supersymmetry, chiral symmetry and the generalized BRS transformation in lattice formulations of 4D SYM
- The Supersymmetric Ward-Takahashi Identity in 1-Loop Lattice Perturbation Theory. I. General Procedure
- Three Dimensional N=2 Supersymmetry on the Lattice
- 3D N = 1 SYM Chern-Simons theory on the Lattice
- Ferrara--Zumino supermultiplet and the energy-momentum tensor in the lattice formulation of 4D SYM
- Lattice supersymmetric Ward identities
- N=1 Supersymmetric Yang-Mills on the lattice at strong coupling