Colored discrete spaces : higher dimensional combinatorial maps and quantum gravity /: higher dimensional combinatorial maps and quantum gravity. (2018)
- Record Type:
- Book
- Title:
- Colored discrete spaces : higher dimensional combinatorial maps and quantum gravity /: higher dimensional combinatorial maps and quantum gravity. (2018)
- Main Title:
- Colored discrete spaces : higher dimensional combinatorial maps and quantum gravity
- Further Information:
- Note: Luca Lionni.
- Authors:
- Lionni, Luca
- Contents:
- Intro; Supervisors' Foreword; Abstract; Acknowledgements; Contents; Symbols; 1 Introduction; References; 2 Colored Simplices and Edge-Colored Graphs; 2.1 Combinatorial Maps; 2.2 Colored Simplicial Pseudo-Complexes; 2.3 Edge-Colored Graphs; 2.3.1 Graph Encoded Manifolds; 2.3.2 Topology; 2.3.3 Gurau's Degree; 2.3.4 Melonic Graphs; 2.4 p-Angulations in Higher Dimension; 2.4.1 Building Blocks: Bubbles; 2.4.2 Gluings of Bubbles; 2.4.3 Bubble-Dependent Degree; 2.4.4 Pairings and Coverings; 2.4.5 Colored Polytopes in Three Dimensions; 2.5 Quantum Gravity and Random Tensor Models 2.5.1 Discretized Einstein-Hilbert Action2.5.2 Two Dimensions; 2.5.3 Guideline in Higher Dimension; 2.5.4 Colored Random Tensor Model; 2.5.5 Uncolored Random Tensor Models; 2.5.6 The Sachdev-Ye-Kitaev Model and Real Tensors; References; 3 Bijective Methods; 3.1 A First Bijection in the Simpler Case of Cyclic Bubbles; 3.2 Tutte's Bijection and Cyclic Bubbles; 3.2.1 Tutte's Bijection; 3.2.2 Cyclic Bubbles Again; 3.3 Bijection Between Colored Graphs and Stacked Maps; 3.3.1 Stacked Maps; 3.3.2 The Bijection; 3.3.3 Bubble-Restricted Gluings; 3.4 The Quartic Melonic Case 3.4.1 Quartic Melonic Gluings of Positive Degree3.4.2 The Boundary Case; 3.4.3 Locally-Orientable Quartic Melonic Gluings; 3.5 Unicellular Graphs and the Colored SYK Model; 3.5.1 Complex SYK: Bipartite Contributions; 3.5.2 Real SYK: Non-bipartite Contributions; 3.5.3 Counting Unicellular Graphs of a Given Order; 3.6 Intermediate Field Theory;Intro; Supervisors' Foreword; Abstract; Acknowledgements; Contents; Symbols; 1 Introduction; References; 2 Colored Simplices and Edge-Colored Graphs; 2.1 Combinatorial Maps; 2.2 Colored Simplicial Pseudo-Complexes; 2.3 Edge-Colored Graphs; 2.3.1 Graph Encoded Manifolds; 2.3.2 Topology; 2.3.3 Gurau's Degree; 2.3.4 Melonic Graphs; 2.4 p-Angulations in Higher Dimension; 2.4.1 Building Blocks: Bubbles; 2.4.2 Gluings of Bubbles; 2.4.3 Bubble-Dependent Degree; 2.4.4 Pairings and Coverings; 2.4.5 Colored Polytopes in Three Dimensions; 2.5 Quantum Gravity and Random Tensor Models 2.5.1 Discretized Einstein-Hilbert Action2.5.2 Two Dimensions; 2.5.3 Guideline in Higher Dimension; 2.5.4 Colored Random Tensor Model; 2.5.5 Uncolored Random Tensor Models; 2.5.6 The Sachdev-Ye-Kitaev Model and Real Tensors; References; 3 Bijective Methods; 3.1 A First Bijection in the Simpler Case of Cyclic Bubbles; 3.2 Tutte's Bijection and Cyclic Bubbles; 3.2.1 Tutte's Bijection; 3.2.2 Cyclic Bubbles Again; 3.3 Bijection Between Colored Graphs and Stacked Maps; 3.3.1 Stacked Maps; 3.3.2 The Bijection; 3.3.3 Bubble-Restricted Gluings; 3.4 The Quartic Melonic Case 3.4.1 Quartic Melonic Gluings of Positive Degree3.4.2 The Boundary Case; 3.4.3 Locally-Orientable Quartic Melonic Gluings; 3.5 Unicellular Graphs and the Colored SYK Model; 3.5.1 Complex SYK: Bipartite Contributions; 3.5.2 Real SYK: Non-bipartite Contributions; 3.5.3 Counting Unicellular Graphs of a Given Order; 3.6 Intermediate Field Theory; 3.6.1 The Hubbard-Stratonovich Transformation; 3.6.2 Matrix Models for Quartic Tensor Models; 3.6.3 Matrix Models for Generic Tensor Models; References; 4 Properties of Stacked Maps; 4.1 Trees and the Bound on (D-2)-Cells; 4.1.1 Projected Maps and Trees 4.1.2 Generalized Unicellular Maps4.1.3 Edge-Unhooking; 4.1.4 Score of Trees and the Coefficient aB; 4.1.5 Maps of Positive Degree and the Choice of aB; 4.2 Maximal Maps; 4.2.1 Large h-Pairs; 4.2.2 Comparing Maps and Trees; 4.2.3 One-Cycle Maps; 4.2.4 Connected Sum; 4.2.5 Non-connected Bubbles; 4.2.6 Tree-Like Families and the Bound on (D-2)-Cells; 4.3 Examples; 4.3.1 D/2-Cyclic Bubbles of Different Kinds; 4.3.2 A Bubble with Toroidal Boundary in D=3; 4.3.3 Sextic Bubbles in D=4; 4.3.4 Gluings of Bi-Pyramids and More; 4.4 Fluctuations Around Non-melonic Vacuums 4.4.1 Leading Order Free Energy and Trees4.4.2 Effective Theory of Fluctuations: Pruning and Schemes; References; 5 Summary and Outlook; 5.1 Summary of the Studied Building Blocks; 5.1.1 Dimension Three; 5.1.2 Dimension Four; 5.1.3 Dimension D; 5.2 Towards More Interesting Behaviors?; Reference … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2018
- Extent:
- 1 online resource (xviii, 218 pages), illustrations (some color)
- Subjects:
- 530.15
Physics
Mathematical physics
Quantum gravity -- Mathematics
Combinatorial analysis
SCIENCE / Energy
SCIENCE / Mechanics / General
SCIENCE / Physics / General
Combinatorial analysis
Mathematical physics
Quantum gravity -- Mathematics
Physics
Mathematical Methods in Physics
Classical and Quantum Gravitation, Relativity Theory
Geometry
Science -- Gravity
Mathematics -- Geometry -- General
Gravity
Geometry
Geometry
Science -- Mathematical Physics
Mathematical physics
Electronic books - Languages:
- English
- ISBNs:
- 9783319960234
3319960237 - Related ISBNs:
- 9783319960227
3319960229 - Notes:
- Note: Includes bibliographical references.
Note: Online resource; title from PDF title page (SpringerLink, viewed August 9, 2018). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.358942
- Ingest File:
- 01_320.xml