The holographic principle in quantum gravity

The Holographic Principle conjectures that all information contained within the bulk of spacetime is encoded in its boundary. AdS/CFT is a manifestation of this theory, and it provides a map between a quantum theory of gravity and a non-gravitational quantum field theory. This principle is currently...

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Main Author: Arifa, Khatee Zathul
Other Authors: Tan Hai Siong
Format: Final Year Project
Language:English
Published: 2019
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Online Access:http://hdl.handle.net/10356/77118
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-771182023-02-28T23:12:14Z The holographic principle in quantum gravity Arifa, Khatee Zathul Tan Hai Siong School of Physical and Mathematical Sciences DRNTU::Science::Physics The Holographic Principle conjectures that all information contained within the bulk of spacetime is encoded in its boundary. AdS/CFT is a manifestation of this theory, and it provides a map between a quantum theory of gravity and a non-gravitational quantum field theory. This principle is currently being investigated as it could potentially be the postulate that guides in formulating quantum gravitational theories. In this project, we explored some important aspects of the holographic principle by studying a particular example of the AdS3/CFT2 correspondence, where the 2 dimensional CFT theory is taken to be living on the boundary of AdS3. We then derived some important properties that the CFT2 theory should have to correctly reproduce the same results as quantum gravity in AdS3 spacetime. Most importantly, we computed the central charge, which is an intrinsic quantity pertaining to CFT, by comparing the trace anomalies that arose from the stress tensors of CFT2 and AdS3 at its boundary. This is an important quantity that will help in matching gravitational descriptions to the quantum field theory counterparts, such as recovering the Bekenstein-Hawking black hole entropy from the CFT2's Cardy Formula. Lastly, we studied scalar propagators on BTZ black hole spacetime and matched them to the CFT2 two-point functions, which has a periodicity that captures the Hawking Temperature of the BTZ black hole. Bachelor of Science in Physics 2019-05-09T05:40:39Z 2019-05-09T05:40:39Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/77118 en 86 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Physics
spellingShingle DRNTU::Science::Physics
Arifa, Khatee Zathul
The holographic principle in quantum gravity
description The Holographic Principle conjectures that all information contained within the bulk of spacetime is encoded in its boundary. AdS/CFT is a manifestation of this theory, and it provides a map between a quantum theory of gravity and a non-gravitational quantum field theory. This principle is currently being investigated as it could potentially be the postulate that guides in formulating quantum gravitational theories. In this project, we explored some important aspects of the holographic principle by studying a particular example of the AdS3/CFT2 correspondence, where the 2 dimensional CFT theory is taken to be living on the boundary of AdS3. We then derived some important properties that the CFT2 theory should have to correctly reproduce the same results as quantum gravity in AdS3 spacetime. Most importantly, we computed the central charge, which is an intrinsic quantity pertaining to CFT, by comparing the trace anomalies that arose from the stress tensors of CFT2 and AdS3 at its boundary. This is an important quantity that will help in matching gravitational descriptions to the quantum field theory counterparts, such as recovering the Bekenstein-Hawking black hole entropy from the CFT2's Cardy Formula. Lastly, we studied scalar propagators on BTZ black hole spacetime and matched them to the CFT2 two-point functions, which has a periodicity that captures the Hawking Temperature of the BTZ black hole.
author2 Tan Hai Siong
author_facet Tan Hai Siong
Arifa, Khatee Zathul
format Final Year Project
author Arifa, Khatee Zathul
author_sort Arifa, Khatee Zathul
title The holographic principle in quantum gravity
title_short The holographic principle in quantum gravity
title_full The holographic principle in quantum gravity
title_fullStr The holographic principle in quantum gravity
title_full_unstemmed The holographic principle in quantum gravity
title_sort holographic principle in quantum gravity
publishDate 2019
url http://hdl.handle.net/10356/77118
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