English

Stochastic quantization and holographic Wilsonian renormalization group of scalar theory with generic mass, self-interaction and multiple trace deformation

High Energy Physics - Theory 2023-10-05 v3

Abstract

We explore the mathematical relationship between holographic Wilsonian renormalization group(HWRG) and stochastic quantization(SQ) of scalar field theory with its generic mass, self-interaction and nn-multiple-trace deformation on the dd-dimensional conformal boundary defined in AdSd+1_{d+1} spacetime. We understand that once we define our Euclidean action, SES_E as SE2SBS_E\equiv -2S_B, then the stochastic process will reconstruct the holographic Wilsonian renormalization group data via solving Langevin equation and computing stochastic correlation functions. The SBS_B is given by SB=Sct+SdefS_B=S_{\rm ct}+S_{\rm def}, where SctS_{\rm ct} is the boundary counter term and SdefS_{\rm def} is the boundary deformation which gives a boundary condition. In our study, we choose the boundary condition adding (marginal)nn-multiple trace deformation to the holographic dual field theory. In this theory, we establish maps bewteen ficticious time, tt evolution of stochastic nn-point, (2n22n-2)-point correlation functions and the (AdS)radial, rr evolution of nn-multiple-trace and (2n22n-2)-multiple-trace deformations respectively once we take identifications of r=tr=t and between some of constants appearing in both sides.

Keywords

Cite

@article{arxiv.2305.18920,
  title  = {Stochastic quantization and holographic Wilsonian renormalization group of scalar theory with generic mass, self-interaction and multiple trace deformation},
  author = {Gitae Kim and Ji-seong Chae and WooCheol Shin and Jae-Hyuk Oh},
  journal= {arXiv preprint arXiv:2305.18920},
  year   = {2023}
}

Comments

41 pages and 3 figures, typos are corrected