Complete Electroweak Chiral Lagrangian with a Light Higgs at NLO
Abstract
We consider the Standard Model, including a light scalar boson , as an effective theory at the weak scale of some unknown dynamics of electroweak symmetry breaking. This dynamics may be strong, with emerging as a pseudo-Goldstone boson. The symmetry breaking scale is taken to be at or above. We review the leading-order Lagrangian within this framework, which is nonrenormalizable in general. A chiral Lagrangian can then be constructed based on a loop expansion. A systematic power counting is derived and used to identify the classes of counterterms that appear at one loop order. With this result the complete Lagrangian is constructed at next-to-leading order, . This Lagrangian is the most general effective description of the Standard Model containing a light scalar boson, in general with strong dynamics of electroweak symmetry breaking. Scenarios such as the SILH ansatz or the dimension-6 Lagrangian of a linearly realized Higgs sector can be recovered as special cases.
Keywords
Cite
@article{arxiv.1307.5017,
title = {Complete Electroweak Chiral Lagrangian with a Light Higgs at NLO},
author = {Gerhard Buchalla and Oscar Cata and Claudius Krause},
journal= {arXiv preprint arXiv:1307.5017},
year = {2015}
}
Comments
25 pages, no figures; v2: references added, matches published version; v3: corrected matching of Higgs-portal example to chiral Lagrangian in sec. 7.2