2016-06-27

String Theory and Holographic Duality (Fall 2014) by Hong Liu at MIT

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source: MIT OpenCourseWare    2016年3月2日/上次更新:2016年3月2日
MIT 8.821 String Theory and Holographic Duality, Fall 2014
View the complete course: http://ocw.mit.edu/8-821F14
Instructor: Hong Liu
This course covers the new field of Holographic Duality, which brings together many seemingly unconnected subjects including string theory/quantum gravity, black holes, QCD at extreme conditions, exotic condensed matter systems, and quantum information.
License: Creative Commons BY-NC-SA
More information at http://ocw.mit.edu/terms
More courses at http://ocw.mit.edu

1. Emergence of Gravity 1:31:11
2. Classical Black Hole Geometry 1:18:22
3. Causal Structure of a Black Hole and Black Hole Temperature 1:22:04
4. Physical Interpretation of Black Hole Temperature 1:28:44
5. Black Hole Thermodynamics 1:19:45
6. Holographic Principle 1:26:05
7. Structure of Large N Expansion 1:23:09
8. Large N Expansion as a String Theory, Part I 1:29:45
9. Large N Expansion as a String Theory, Part II 1:53:10
10. Basics of String Theory and Light-cone Gauge 1:42:25
11. String Theory in the Light-cone Gauge 1:22:18
12. String Spectrum and Graviton 1:44:57
13. Physics of D-branes, Part I 1:23:58
14. Physics of D-branes, Part II 1:52:27
15. Physics of D-branes, Part III 1:24:10
16. Geometry of D-branes and AdS / CFT Conjecture 1:49:03
17. More on AdS / CFT Duality 1:48:07
18. General Aspects of the Duality 1:24:58
19. Mass-dimension Relation 1:52:06
20. Euclidean Correlation Functions: Two-point Functions 1:22:43
21. Euclidean Correlation Functions: Higher-point Functions 1:20:30
22. Computation of the Wilson Loop 1:50:49
23. Duality at a Finite Temperature and Finite Chemical Potential 1:25:55
24. Holographic Entanglement Entropy 1:56:32

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