Deciphering the minimum of energy of some walking technicolor models
arXiv:1005.1896 · doi:10.1103/PhysRevD.81.097702
Abstract
There are quasi-conformal theories, like the Minimal and Ultraminimal Technicolor models, which may break dynamically the gauge symmetry of the Standard Model and at the same time are compatible with electroweak precision data. The main characteristic of this type of models is their fermionic content in one or more higher dimensional representations, therefore it is not immediate to know which model leads to the most attractive channel or the minimum vacuum energy state. We discuss the effective potential for composite operators for these models, verifying that their vacuum energy values are different, with the Ultraminimal model having a deeper minimum of energy.
4 pages, 2 figures, published version.
References in corpus (6)
- Minimal Walking Technicolor: Set Up for Collider Physics
- Ultra Minimal Technicolor and its Dark Matter TIMP
- Technicolor Walks at the LHC
- WW Scattering in Walking Technicolor
- Positivity issues for the pinch-technique gluon propagator and their resolution
- The Electroweak Phase Transition in Ultra Minimal Technicolor