Interacting Two-Time Physics Field Theory With a BRST Gauge Invariant Action
Itzhak Bars, Yueh-Cheng Kuo

TL;DR
This paper develops a BRST gauge invariant field theory for 2T-physics with interactions, unifying various 1T-physics theories and enabling quantum-level studies via path integrals.
Contribution
It introduces a novel BRST formulation for interacting 2T-physics field theory, connecting it to 1T-physics through gauge choices and enabling quantum analysis.
Findings
Constructed a BRST gauge invariant action for 2T-physics with interactions.
Derived Klein-Gordon theory with SO(d,2) invariance as a gauge-fixed form.
Proposed that different gauge choices yield various 1T-physics theories as holographic images.
Abstract
We construct a field theoretic version of 2T-physics including interactions in an action formalism. The approach is a BRST formulation based on the underlying Sp(2,R)gauge symmetry, and shares some similarities with the approach used to construct string field theory. In our first case of spinless particles, the interaction is uniquely determined by the BRST gauge symmetry, and it is different than the Chern-Simons type theory used in open string field theory. After constructing a BRST gauge invariant action for 2T-physics field theory with interactions in d+2 dimensions, we study its relation to standard 1T-physics field theory in (d-1)+1 dimensions by choosing gauges. In one gauge we show that we obtain the Klein-Gordon field theory in (d-1)+1 dimensions with unique SO(d,2) conformal invariant self interactions at the classical field level. This SO(d,2) is the natural linear Lorentz…
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