English

Schr\"odinger Functional of a Quantum Scalar Field in Static Space-Times from Precanonical Quantization

High Energy Physics - Theory 2019-04-26 v2 General Relativity and Quantum Cosmology Mathematical Physics math.MP

Abstract

The functional Schr\"odinger representation of a scalar field on an nn-dimensional static space-time background is argued to be a singular limiting case of the hypercomplex quantum theory of the same system obtained by the precanonical quantization based on the space-time symmetric De Donder-Weyl Hamiltonian theory. The functional Schr\"odinger representation emerges from the precanonical quantization when the ultraviolet parameter ϰ\varkappa introduced by precanonical quantization is replaced by γ0δinv(0)\underline{\gamma}{}_0\delta^\mathrm{inv}(\mathbf{0}), where γ0\underline{\gamma}{}_0 is the time-like tangent space Dirac matrix and δinv(0)\delta^\mathrm{inv}(\mathbf{0}) is an invariant spatial (n1)(n-1)-dimensional Dirac's delta function whose regularized value at x=0\mathbf{x}=\mathbf{0} is identified with the cutoff of the volume of the momentum space. In this limiting case, the Schr\"odinger wave functional is expressed as the trace of the product integral of Clifford-algebra-valued precanonical wave functions restricted to a certain field configuration and the canonical functional derivative Schr\"odinger equation is derived from the manifestly covariant Dirac-like precanonical Schr\"odinger equation which is independent of a choice of a codimension-one foliation.

Keywords

Cite

@article{arxiv.1810.09968,
  title  = {Schr\"odinger Functional of a Quantum Scalar Field in Static Space-Times from Precanonical Quantization},
  author = {I. V. Kanatchikov},
  journal= {arXiv preprint arXiv:1810.09968},
  year   = {2019}
}

Comments

15 pages. arXiv admin note: text overlap with arXiv:1805.05279