Super Yang-Mills theory in 10+2 dimensions, The 2T-physics Source for N=4 SYM and M(atrix) Theory
arXiv:1008.4761
Abstract
In this paper we construct super Yang-Mills theory in 10+2 dimensions, a number of dimensions that was not reached before in a unitary supersymmetric field theory, and show that this is the 2T-physics source of some cherished lower dimensional field theories. The much studied conformally exact N=4 Super Yang-Mills field theory in 3+1 dimensions is known to be a compactified version of N=1 SYM in 9+1 dimensions, while M(atrix) theory is obtained by compactifications of the 9+1 theory to 0 dimensions (also 0+1 and others). We show that there is a deeper origin of these theories in two higher dimensions as they emerge from the new theory with two times. Pursuing various alternatives of gauge choices, solving kinematic equations and/or dimensional reductions of the 10+2 theory, we suggest a web of connections that include those mentioned above and a host of new theories that relate 2T-physics and 1T-physics field theories, all of which have the 10+2 theory as the parent. In addition to establishing the higher spacetime underpinnings of these theories, a side benefit could be that in principle our approach can be used to develop new computational techniques.
43 pages (including 3 appendices), 1 figure
References in corpus (11)
- The Standard Model of Particles and Forces in the Framework of 2T-physics
- Gravity in 2T-Physics
- Gauge Symmetry in Phase Space, Consequences for Physics and Spacetime
- Geometry and Symmetry Structures in 2T Gravity
- The Big Bang and Inflation United by an Analytic Solution
- Field Theory in 2T-physics with N=1 Supersymmetry
- Dual Field Theories In (d-1)+1 Emergent Spacetimes From A Unifying Field Theory In d+2 Spacetime
- Dualities among 1T-Field Theories with Spin, Emerging from a Unifying 2T-Field Theory
- Conformal theories including conformal gravity as gauge theories on the hypercone
- Constraints on Interacting Scalars in 2T Field Theory and No Scale Models in 1T Field Theory
- N=2,4 Supersymmetric Gauge Field Theory in 2T-physics