Nonlocal Scalar Quantum Field Theory: Functional Integration, Basis Functions Representation and Strong Coupling Expansion
Abstract
Nonlocal QFT of one-component scalar field in -dimensional Euclidean spacetime is considered. The generating functional (GF) of complete Green functions as a functional of external source , coupling constant , and spatial measure is studied. An expression for GF in terms of the abstract integral over the primary field is given. An expression for GF in terms of integrals over the primary field and separable Hilbert space (HS) is obtained by means of a separable expansion of the free theory inverse propagator over the separable HS basis. The classification of functional integration measures is formulated, according to which trivial and two nontrivial versions of GF are obtained. Nontrivial versions of GF are expressed in terms of -norm and -norm, respectively. The definition of the -norm generator is suggested. Simple cases of sharp and smooth generators are considered. Expressions for GF in terms of integrals over the separable HS with new integrands are obtained. For polynomial theories and for the nonpolynomial theory , integrals over the separable HS in terms of a power series over the inverse coupling constant for both norms (-norm and -norm) are calculated. Critical values of model parameters when a phase transition occurs are found numerically. A generalization of the theory to the case of the uncountable integral over HS is formulated. A comparison of two GFs , one in the case of uncountable HS integral and one obtained using the Parseval-Plancherel identity, is given.
Cite
@article{arxiv.1903.10581,
title = {Nonlocal Scalar Quantum Field Theory: Functional Integration, Basis Functions Representation and Strong Coupling Expansion},
author = {M. Bernard and V. A. Guskov and M. G. Ivanov and A. E. Kalugin and S. L. Ogarkov},
journal= {arXiv preprint arXiv:1903.10581},
year = {2019}
}
Comments
26 pages, 2 figures; v2: significant additions in the text; prepared for the special issue "QCD and Hadron Structure" of the journal Particles; v3: minimal corrections; v4: paragraphs added related to Reviewer comments