Version 2 2023-09-26, 23:55Version 2 2023-09-26, 23:55
Version 1 2021-11-15, 17:07Version 1 2021-11-15, 17:07
thesis
posted on 2023-09-26, 23:55authored byGray, Finnian
<p>In this thesis we look at the intersection of quantum field theory and general relativity. We focus on Hawking radiation from black holes and its implications. This is done on two fronts. In the first we consider the greybody factors arising from a Schwarzschild black hole. We develop a new way to numerically calculate these greybody factors using the transfer matrix formalism and the product calculus. We use this technique to calculate some of the relevant physical quantities and consider their effect on the radiation process. The second front considers a generalisation of Wick rotation. This is motivated by the success of Wick rotation and Euclidean quantum field theory techniques to calculate the Hawking temperature. We find that, while an analytic continuation of the coordinates is not well defined and highly coordinate dependent, a direct continuation of the Lorentzian signature metric to Euclidean signature has promising results. It reproduces the Hawking temperature and is coordinate independent. However for consistency, we propose a new action for the Euclidean theory which cannot be simply the Euclidean Einstein-Hilbert action.</p>
History
Copyright Date
2016-01-01
Date of Award
2016-01-01
Publisher
Te Herenga Waka—Victoria University of Wellington
Rights License
CC BY-NC-ND 4.0
Degree Discipline
General Relativity
Degree Grantor
Te Herenga Waka—Victoria University of Wellington
Degree Level
Masters
Degree Name
Master of Science
ANZSRC Type Of Activity code
1 PURE BASIC RESEARCH
Victoria University of Wellington Item Type
Awarded Research Masters Thesis
Language
en_NZ
Victoria University of Wellington School
School of Mathematics, Statistics and Operations Research