Fundamental aspects of asymptotic safety in quantum gravity
Author(s)
Bibliographic Information
Fundamental aspects of asymptotic safety in quantum gravity
(Springer theses : recognizing outstanding Ph. D. research)
Springer, c2019
Available at 1 libraries
  Aomori
  Iwate
  Miyagi
  Akita
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Library, Research Institute for Mathematical Sciences, Kyoto University数研
SLA||9||1200040018758
Note
"Doctoral thesis accepted by the University of Southampton, Southampton, UK"
Includes bibliographical references
Description and Table of Contents
Description
After an extensive introduction to the asymptotic safety approach to quantum gravity, this thesis explains recent key advances reported in four influential papers. Firstly, two exact solutions to the reconstruction problem (how to recover a bare action from the effective average action) are provided. Secondly, the fundamental requirement of background independence in quantum gravity is successfully implemented. Working within the derivative expansion of conformally reduced gravity, the notion of compatibility is developed, uncovering the underlying reasons for background dependence generically forbidding fixed points in such models. Thirdly, in order to understand the true nature of fixed-point solutions, one needs to study their asymptotic behaviour. The author carefully explains how to find the asymptotic form of fixed point solutions within the f(R) approximation. Finally, the key findings are summarised and useful extensions of the work are identified. The thesis finishes by considering the need to incorporate matter into the formalism in a compatible way and touches upon potential opportunities to test asymptotic safety in the future.
Table of Contents
Introduction.- Solutions to the reconstruction problem.- Background independence in a background dependent RG.- Asymptotic solutions in asymptotic safety.- Outlook.
by "Nielsen BookData"