A dilaton-pion mass relation
arXiv:1609.02264
Abstract
Recently, Golterman and Shamir presented an effective field theory which is supposed to describe the low-energy physics of the pion and the dilaton in an gauge theory with Dirac fermions in the fundamental representation. By employing this formulation with a slight but important modification, we derive a relation between the dilaton mass squared~, with and without the fermion mass~, and the pion mass squared~ to the leading order of the chiral logarithm. This is analogous to a similar relation obtained by Matsuzaki and~Yamawaki on the basis of a somewhat different low-energy effective field theory. Our relation reads with~, where and~ are decay constants of the pion and the dilaton, respectively. This mass relation differs from the one derived by Matsuzaki and~Yamawaki on the points that , where is the mass anomalous dimension, and the leading chiral logarithm correction is~. For~, the value of the decay constant~ estimated from our mass relation becomes larger than estimated from the relation of Matsuzaki and~Yamawaki.
13 pages
References in corpus (4)
Cited by in corpus (11)
- Dilaton EFT Framework For Lattice Data
- Extending Chiral Perturbation Theory with an Isosinglet Scalar
- Analysis of a Dilaton EFT for Lattice Data
- The Dilaton Potential and Lattice Data
- A Near-Conformal Composite Higgs Model
- Looking behind the Standard Model with lattice gauge theory
- Calculable mass hierarchies and a light dilaton from gravity duals
- Towards top-down holographic composite Higgs: minimal coset from maximal supergravity
- The Coulomb branch of N=4 SYM and dilatonic scions in supergravity
- A light dilaton in a metastable vacuum
- Dilatonic states near holographic phase transitions