<p><p>In this thesis, the author considers quantum gravity to investigate the mysterious origin of our universe and its mechanisms. He and his collaborators have greatly improved the analyticity of two models: causal dynamical triangulations (CDT) and n-DBI gravity, with the space-time foliation whi
Space-time foliation in quantum gravity. Ph.D. thesis
โ Scribed by Yuki Sato
- Publisher
- Springer
- Year
- 2014
- Tongue
- English
- Leaves
- 112
- Series
- Springer Theses
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
In this thesis, the author considers quantum gravity to investigate the mysterious origin of our universe and its mechanisms. He and his collaborators have greatly improved the analyticity of two models: causal dynamical triangulations (CDT) and n-DBI gravity, with the space-time foliation which is one common factor shared by these two separate models.
ย
In the first part, the analytic method of coupling matters to CDT in 2-dimensional toy models is proposed to uncover the underlying mechanisms of the universe and to remove ambiguities remaining in CDT. As a result, the wave function of the 2-dimensional universe where matters are coupled is derived. The behavior of the wave function reveals that the Hausdorff dimension can be changed when the matter is non-unitary.
ย
In the second part, the n-DBI gravity model is considered. The author mainly investigates two effects driven by the space-time foliation: the appearance of a new conserved charge in black holes and an extra scalar mode of the graviton. The former implies a breakdown of the black-hole uniqueness theorem while the latter does not show any pathological behavior.
โฆ Table of Contents
Front Matter....Pages i-xiii
Introduction....Pages 1-36
Causal Dynamical Triangulation....Pages 37-56
$$n$$ -DBI Gravity....Pages 57-79
Summary....Pages 81-82
Back Matter....Pages 83-100
โฆ Subjects
Quantum gravity;Space and time;SCIENCE -- Energy;SCIENCE -- Mechanics -- General;SCIENCE -- Physics -- General
๐ SIMILAR VOLUMES
This thesis deals with essentially four different topics within general relativity: pedagogical techniques for illustrating curved spacetime, inertial forces, gyroscope precession and optical geometry. Concerning the pedagogical techniques, I investigate two distinctly different methods, the dual an
After almost a century, the field of quantum gravity remains as difficult and inspiring as ever. Today, it finds itself a field divided, with two major contenders dominating: string theory, the leading exemplification of the covariant quantization program; and loop quantum gravity, the canonical sch