Point-Like Charges and Dirichlet Boundary Conditions in a Nonlocal Scalar Field Theory
L. H. C. Borges, C. Filgueiras, F. A. Barone, A. A. Nogueira
Abstract
In this paper, we investigate novel classical non-local effects in scalar field theory arising from the presence of external sources and a material boundary. Specifically, we consider a model in which the standard Klein-Gordon field theory is modified by a non-local term. First, we analyze the interaction between stationary field sources modeled as point-like scalar charges. In specific configurations, the resulting interparticle potential reduces to the Cornell form. Then, we examine the model in the presence of a Dirichlet plane, computing both the scalar field propagator and the interaction force between the Dirichlet plane and a point-like scalar charge. Additionally, we demonstrate the failure of the image method in this non-local context and compare our results with those obtained in non-local electrodynamics and in the standard Klein-Gordon field theory.
Create a lesson
Related papers
Dual symmetry breaking and magnetic charge screening
Saulo Carneiro
Primary Decompositions in Lorentz-Covariant Rings
Giuseppe De Laurentis, David Tai
Anyon Crystallization by Statistics
Zohar Komargodski, Xuzixiang Lou, Ivri Nagar et al.
Functional Dimensional Regularization
Piero Beretta, Alessandro Codello
Bulk OPE Coefficients of the E-Series Virasoro Minimal Models
Amaury Lhoste, Jiaxin Qiao, Masahito Yamazaki
Classification of order-two T-duality orbifolds at the SO(12) free fermionic point
Alon E. Faraggi, Stefan Groot Nibbelink, Benjamin Percival