Cooling stochastic quantization with colored noise

Smoothing of field configurations is highly important for precision calculations of physical quantities on the lattice. We present a cooling method based on Stochastic Quantization with a built-in UV momentum cutoff. The latter is implemented via a UV-regularized, hence colored, noise term. Our meth...

Description complète

Enregistré dans:
Détails bibliographiques
Auteurs principaux: Pawlowski, Jan M. (Auteur) , Stamatescu, Ion-Olimpiu (Auteur) , Ziegler, Felix P. G. (Auteur)
Format: Article (Journal) Chapter/Article
Langue:anglais
Publié: 2017
In: Arxiv

Accès en ligne:Verlag, kostenfrei, Volltext: http://arxiv.org/abs/1705.06231
Accéder au texte intégral
Notes sur l'auteur:Jan M. Pawlowski, Ion-Olimpiu Stamatescu, and Felix P.G. Ziegler
Description
Résumé:Smoothing of field configurations is highly important for precision calculations of physical quantities on the lattice. We present a cooling method based on Stochastic Quantization with a built-in UV momentum cutoff. The latter is implemented via a UV-regularized, hence colored, noise term. Our method is tested in a two-dimensional scalar field theory. We show, that UV modes can be removed systematically without altering the physics content of the theory. The approach has an interpretation in terms of the non-perturbative (Wilsonian) renormalization group that facilitates the physics interpretation of the cutoff procedure. It also can be used to define the maximal colored cooling applicable without changing the theory.
Description:Gesehen am 28.11.2017
Description matérielle:Online Resource