Holographic geometry and equation the Schwinger-Tomonaga
Holographic geometry and equation the Schwinger-Tomonaga
Code (0)
등록된 구현이 없습니다.
Similar Papers 제목 키워드 기반
Neural solutions of coupled ghost and gluon Dyson--Schwinger equations in Landau gauge
The coupled ghost and gluon Dyson--Schwinger equations (DSEs) of four-dimensional Landau-gauge Yang--Mills (YM) theory are solved with a neural representation trained only from renormalized equation residuals. The neural…
A machine learning pipeline for autonomous numerical analytic continuation of Dyson-Schwinger equations
Dyson-Schwinger equations (DSEs) are a non-perturbative way to express n-point functions in quantum field theory. Working in Euclidean space and in Landau gauge, for example, one can study the quark propagator Dyson-Schw…
BIG-bench Machine LearningDeep Reinforcement LearningSurface focusing, holographic geometry and surface holographic integral
Surface focusing, holographic geometry and surface holographic integral
Physics-informed neural networks viewpoint for solving the Dyson-Schwinger equations of quantum electrodynamics
Physics-informed neural networks (PINNs) are employed to solve the Dyson--Schwinger equations of quantum electrodynamics (QED) in Euclidean space, with a focus on the non-perturbative generation of the fermion's dynamica…
Greens function decomposition for a new rewriting of inverse scattering equations
In this paper, a new inversion model for 2D microwave imaging is introduced by means of a convenient rewriting of the usual Lippmann Schwinger integral scattering equation. Such model is derived by decomposing the Greens…