Constraints on Interacting Scalars in 2T Field Theory and No Scale Models in 1T Field Theory
arXiv:1008.1540 · doi:10.1103/PhysRevD.82.125025
Abstract
In this paper I determine the general form of the physical and mathematical restrictions that arise on the interactions of gravity and scalar fields in the 2T field theory setting, in d+2 dimensions, as well as in the emerging shadows in d dimensions. These constraints on scalar fields follow from an underlying Sp(2,R) gauge symmetry in phase space. Determining these general constraints provides a basis for the construction of 2T supergravity, as well as physical applications in 1T-field theory, that are discussed briefly here, and more detail elsewhere. In particular, no scale models that lead to a vanishing cosmological constant at the classical level emerge naturally in this setting.
22 pages. Footnote 14 added in v2
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Cited by in corpus (5)
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- Traversing Cosmological Singularities, Complete Journeys Through Spacetime Including Antigravity
- Super Yang-Mills theory in 10+2 dimensions, The 2T-physics Source for N=4 SYM and M(atrix) Theory
- Constraint on the Higgs-Dilaton potential via Warm inflation in Two-Time Physics