Detailed Information on Publication Record
2023
Gravitational corrections to electroweak vacuum decay: metric vs. Palatini
GIALAMAS, Ioannis D, Alexandros KARAM and Thomas PAPPASBasic information
Original name
Gravitational corrections to electroweak vacuum decay: metric vs. Palatini
Authors
GIALAMAS, Ioannis D, Alexandros KARAM and Thomas PAPPAS (300 Greece, belonging to the institution)
Edition
Physics Letters B, 2023, 0370-2693
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
10308 Astronomy
Country of publisher
Netherlands
Confidentiality degree
není předmětem státního či obchodního tajemství
References:
RIV identification code
RIV/47813059:19630/23:A0000292
Organization unit
Institute of physics in Opava
UT WoS
000982487300001
Keywords in English
standard model;standard Einstein-Hilbert-Higgs action;stability of the electroweak vacuum;
Tags
International impact, Reviewed
Změněno: 13/2/2024 14:51, Mgr. Pavlína Jalůvková
Abstract
V originále
We consider the standard Einstein-Hilbert-Higgs action where the Higgs field couples nonminimally with gravity via the term xi h2R, and investigate the stability of the electroweak vacuum in the presence of gravitational corrections in both the metric and Palatini formulations of gravity. In order to identify the differences between the two formalisms analytically, we follow a perturbative approach in which the gravitational corrections are taken into consideration via a leading order expansion in the gravitational coupling constant. Our analysis shows that in the Palatini formalism, the well-known effect of gravity suppressing the vacuum decay probability, becomes milder in comparison with the metric case for any value of the nonminimal coupling xi. Furthermore, we have found that in the Palatini formalism, the positivity of the gravitational corrections, which is a necessary requirement for the unitarity of the theory, entails the lower bound xi > -1/12.