arXiv · hep-th/9310007
The Cosmological Constant and Volume-Preserving Diffeomorphism Invariants
Abstract
Observables in the quantum field theories of $(D-1)$-form fields, $\ca$, on $D$-dimensional, compact and orientable manifolds, $M$, are computed. Computations of the vacuum value of $T_{ab}$ find it to be the metric times a function of the volume of spacetime, $Ω(M)$. Part of this function of $Ω$ is a finite zero-mode contribution. The correlation functions of another set of operators give intersection numbers on $M$. Furthermore, a similar computation for products of Wilson area operators results in a function of the volumes of the intersections of the submanifolds the operators are defined on. In addition, scalar field couplings are introduced and potentials are induced after integrating out the $\ca$ field. Lastly, the thermodynamics of the pure theories is found to be analogous to the zero-point motion of a scalar particle. The coupling of a Gaussian scalar field to the $\ca$ field is found to manifest itself on the free energy at high temperatures and/or small volumes.
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R. Brooks. 1993-11-04. The Cosmological Constant and Volume-Preserving Diffeomorphism Invariants. https://doi.org/10.1016/0550-3213(94)90570-3
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