Hamiltonian Monte Carlo simulation of the two-dimensional Wess-Zumino model
arXiv:hep-lat/0110056 · doi:10.1016/S0920-5632(01)01893-X
Abstract
We study a Hamiltonian lattice version of the two-dimensional Wess-Zumino model. Preliminary results obtained by Quantum Monte Carlo with a many-parameter guiding wave function are presented. We analyze the pattern of supersymmetry breaking by measuring the ground state energy and a set of supersymmetric Ward identities. The algorithm is quite effective and allows very precise measurements.
Lattice2001(higgssusy); 3 pages, 2 figures
References in corpus (1)
Cited by in corpus (8)
- Deconstruction and other approaches to supersymmetric lattice field theories
- A lattice study of the two-dimensional Wess Zumino model
- N=2 Wess-Zumino model on the d=2 Euclidean lattice
- Supersymmetry breaking in two dimensions: the lattice N=1 Wess-Zumino model
- Supersymmetry on the lattice
- Phase diagram of the lattice Wess-Zumino model from rigorous lower bounds on the energy
- World-Line Path Integral Study of Supersymmetry Breaking in the Wess-Zumino Model
- A Hamiltonian lattice study of the two-dimensional Wess-Zumino model