Lattice Formulation of Yang-Mills
arXiv:1710.10172 · doi:10.1103/PhysRevD.97.094508
Abstract
We formulate supersymmetric Yang-Mills theory on a Euclidean spacetime lattice using the method of topological twisting. The lattice formulation preserves one scalar supersymmetry charge at finite lattice spacing. The lattice theory is also local, gauge invariant and free from doublers. We can use the lattice formulation of supersymmetric Yang-Mills to study finite temperature nonperturbative sectors of the theory and thus validate the gauge-gravity duality conjecture in a nonconformal theory.
22 pages, no figures. v3: Matches with published version
References in corpus (10)
- Higher derivative corrections to black hole thermodynamics from supersymmetric matrix quantum mechanics
- Non-lattice simulation for supersymmetric gauge theories in one dimension
- Schwarzschild radius from Monte Carlo calculation of the Wilson loop in supersymmetric matrix quantum mechanics
- Thermodynamics of the N=2^* strongly coupled plasma
- N=4 Supersymmetry on a Space-Time Lattice
- Testing holography using lattice super-Yang--Mills on a 2-torus
- Parallel software for lattice N=4 supersymmetric Yang--Mills theory
- Gauge/gravity duality and lattice simulations of one dimensional SYM with sixteen supercharges
- Two-dimensional Lattice Gauge Theories with Matter in Higher Representations
- Recent progress in lattice supersymmetry: from lattice gauge theory to black holes