Monte Carlo simulation of SU(2) Yang-Mills theory with light gluinos
arXiv:hep-lat/9903014 · doi:10.1007/s100520050651
Abstract
In a numerical Monte Carlo simulation of SU(2) Yang-Mills theory with light dynamical gluinos the low energy features of the dynamics as confinement and bound state mass spectrum are investigated. The motivation is supersymmetry at vanishing gluino mass. The performance of the applied two-step multi-bosonic dynamical fermion algorithm is discussed.
latex, 48 pages, 16 figures with epsfig
Cited by in corpus (46)
- Super Yang-Mills on the lattice with domain wall fermions
- Supersymmetric Yang-Mills theory on the lattice
- Supersymmetry on the lattice
- A lattice study of the two-dimensional Wess Zumino model
- Lattice super-Yang-Mills using domain wall fermions in the chiral limit
- Simulation of 4d N=1 supersymmetric Yang-Mills theory with Symanzik improved gauge action and stout smearing
- Light resonances in Ks K pi and eta pi pi final states in gamma gamma collisions at LEP
- Simulations of super Yang-Mills theory in two dimensions
- Progress in four-dimensional lattice supersymmetry
- Parallel software for lattice N=4 supersymmetric Yang--Mills theory
- Predictions and recent results in susy on the lattice
- Dynamical simulation of N=1 supersymmetric Yang-Mills theory with domain wall fermions
- Novel Approach to Super Yang-Mills Theory on Lattice - Exact fermionic symmetry and "Ichimatsu" pattern -
- One loop calculation of SUSY Ward-Takahashi identity on lattice with Wilson fermion
- N=2 Wess-Zumino model on the d=2 Euclidean lattice
- Lattice four-dimensional N=4 SYM is practical
- Information on the Super Yang-Mills Spectrum
- Supersymmetry, chiral symmetry and the generalized BRS transformation in lattice formulations of 4D SYM
- The low-lying mass spectrum of the N=1 SU(2) SUSY Yang-Mills theory with Wilson fermions
- Two-dimensional N=(2,2) super Yang-Mills theory on computer
- Acceleration of the Arnoldi method and real eigenvalues of the non-Hermitian Wilson-Dirac operator
- A Note on effective N=1 Super Yang-Mills Theories versus Lattice Results
- 4D SYM supercurrent in terms of the gradient flow
- Matrix formulation of superspace on 1D lattice with two supercharges
- The Supersymmetric Ward-Takahashi Identity in 1-Loop Lattice Perturbation Theory. I. General Procedure
- Three Dimensional N=2 Supersymmetry on the Lattice
- Spectrum of SU(2) SUSY Yang-Mills Theory with a light gluino
- A factorization algorithm to compute Pfaffians
- SUSY Ward identities in N=1 SYM theory on the lattice
- Exploring gauge theories with adjoint matter on the lattice
- Mass spectrum of -dimensional super Yang-Mills theory on the lattice
- SUSY Ward identities in 1-loop perturbation theory
- Ferrara--Zumino supermultiplet and the energy-momentum tensor in the lattice formulation of 4D SYM
- On the 1-loop lattice perturbation theory of the supersymmetric Ward identities
- N=1 Super Yang-Mills Domain Walls via The Extended Veneziano Yankielowicz Theory
- The Volume Source Technique for flavor singlets: a second look
- The PMS project: Poor Man's Supercomputer
- QCD spectroscopy with three light quarks
- Lattice supersymmetric Ward identities
- Towards the lattice study of M-theory
- Exact Ward-Takahashi identity for the lattice N=1 Wess-Zumino model
- Gluino Condensation in an Interacting Instanton Ensemble
- Implementation of C* boundary conditions in the Hybrid Monte Carlo algorithm
- The Quest for Light Sea Quarks: Algorithms for the Future
- The Road Towards the ILC: Higgs, Top/QCD, Loops
- Tuning of QCD+QED simulations with C boundary conditions