A Renormalization Group Flow Approach to Decoupling and Irrelevant Operators
Abstract
Using Wilson-Polchinski renormalization group equations, we give a simple new proof of decoupling in a -type scalar field theory involving two real scalar fields (one is heavy with mass and the other light). Then, to all orders in perturbation theory, it is shown that effects of virtual heavy particles up to the order can be systematically incorporated into light-particle theory via effective local vertices of canonical dimension at most . The couplings for vertices of dimension are of order and are systematically calculable. All this is achieved through intuitive dimensional arguments without resorting to complicated graphical arguments or convergence theorems.
Cite
@article{arxiv.hep-th/9402117,
title = {A Renormalization Group Flow Approach to Decoupling and Irrelevant Operators},
author = {Chanju Kim},
journal= {arXiv preprint arXiv:hep-th/9402117},
year = {2009}
}
Comments
26 pages, LaTeX, 1 figure Revised version to appear in Annals of Physics (Title was changed. Renormalization conditions on heavy fields were changed to physical ones.)