Article ID Journal Published Year Pages File Type
1840626 Nuclear Physics B 2014 13 Pages PDF
Abstract

We calculate the gravitational contributions to ϕ4ϕ4 theory with general RξRξ gauge-fixing choice and find that the result is gauge independent. Based on weak coupling expansion of gravity and ignoring the possible higher dimensional operators from “integrating out” the impact of gravity, we study the impacts of gravitational effects on vacuum stability. New contributions to the beta function of scalar quartic coupling λ by gravitational effects can modify the RGE running of λ near the Planck scale. Numerical calculations show that the lower bound of higgs mass requiring absolutely vacuum stability can be relaxed for almost 0.6 to 0.8 GeV depending on the choice of top quark mass.

Related Topics
Physical Sciences and Engineering Mathematics Mathematical Physics
Authors
,