Publication: Underlying mechanisms of phase transitions in scalar-tensor theories
Program
KU-Authors
KU Authors
Co-Authors
Özinan, M.
Ünlütürk, K. İ.
Ramazanoğlu, F. M.
Editor & Affiliation
Compiler & Affiliation
Translator
Other Contributor
Date
Language
eng
Type
Embargo Status
N/A
Journal Title
Journal ISSN
Volume Title
Alternative Title
Abstract
Spontaneous scalarization phenomenon in scalar-tensor gravity is known to be a form of phase transition, and it was recently shown that the order of this transition changes depending on the parameters of the theory. There exists a phenomenological description of this result based on Landau theory, but the underlying mechanisms which determine the coefficients of the Landau expansion were unknown. In this study we calculate these coefficients starting from first principles. To this end, we start with an energy functional that describes the nonlinear behavior of the theory, and reduce it to an energy function. This allows us to explain the previously observed, but not well-understood, features of the scalarization phase transition, and enables us to predict which phase transition order will be present for which coupling function or in which regime of the parameter space. The details of the phase transition determine certain astrophysical observables such as signals sourced by transitions from metastable states in first-order scalarization. Thus, predicting these details is an important part of understanding scalarization itself.
Source
Publisher
American Physical Society (APS)
Subject
Physical sciences, Physics and astronomy, Statistical and nonlinear physics, Nuclear and high energy physics, Atomic and molecular physics, And optics
Citation
Has Part
Source
Physical Review D
Book Series Title
Edition
DOI
10.1103/1brh-qzls
