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on
1
Introduction
2
Overview
3
Evolution from the bulk
4
Outline
5
Boundary conditions
6
Large diffiomorphisms
7
Inner product
8
External States
9
Wave Function
10
Momentum Basis
11
Isometric map
12
Higher dimensional gravity
13
Gauge fixing
14
Quantizing
15
Potential
16
Recap
17
Future work
18
Quantum mechanics
19
Norms
Description:
Explore the intricacies of isometric evolution in de Sitter gravity through this 41-minute conference talk delivered by Kristan Jensen from Victoria University. Recorded as part of the "Gravity from algebra: modern field theory methods for holography" conference at the Kavli Institute for Theoretical Physics, delve into topics such as conformal field theory, holography, and quantum gravity. Examine the relationship between consistency conditions in quantum gravity and conformal field theory, and investigate how these concepts may lead to string/M-theory. Cover key areas including large N bootstrap, CFT sum rules, gravitational effective field theory, supersymmetry in holography, low-dimensional holography, modularity, quantum chaos, black holes, symmetry constraints on gravitational path integrals, and AdS vacua. Follow the speaker's outline as they discuss boundary conditions, large diffeomorphisms, inner products, external states, wave functions, momentum basis, isometric maps, higher-dimensional gravity, gauge fixing, quantizing, and potential applications in quantum mechanics. Read more

Isometric Evolution in De Sitter Gravity - Kristan Jensen

Kavli Institute for Theoretical Physics
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