"T-duality"의 두 판 사이의 차이

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imported>Pythagoras0
imported>Pythagoras0
1번째 줄: 1번째 줄:
 
==introduction==
 
==introduction==
 
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* the T stands for toroidal
 
* This refers to the situation where one string theory compactified on a circle of radius R, and another string theory compactified on circle of radius 1/R describe the same physics. Therefore when one of the theories is on a very small circle the other theory is on a very large circle.  
 
* This refers to the situation where one string theory compactified on a circle of radius R, and another string theory compactified on circle of radius 1/R describe the same physics. Therefore when one of the theories is on a very small circle the other theory is on a very large circle.  
 
* <math>\int \partial X \bar{\partial}X</math>
 
* <math>\int \partial X \bar{\partial}X</math>
6번째 줄: 6번째 줄:
 
* T-duality
 
* T-duality
 
:<math>\tilde{R}=\frac{\alpha'}{R}</math>
 
:<math>\tilde{R}=\frac{\alpha'}{R}</math>
 
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* http://iopscience.iop.org/1742-5468/2006/12/P12016/fulltext#SECTIONREF
 
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* http://www.sciencedirect.com/science/article/pii/0370269389910605
 
 
 
 
http://iopscience.iop.org/1742-5468/2006/12/P12016/fulltext#SECTIONREF
 
 
 
http://www.sciencedirect.com/science/article/pii/0370269389910605
 
  
 
 
 
 

2014년 1월 29일 (수) 00:29 판

introduction

  • the T stands for toroidal
  • This refers to the situation where one string theory compactified on a circle of radius R, and another string theory compactified on circle of radius 1/R describe the same physics. Therefore when one of the theories is on a very small circle the other theory is on a very large circle.
  • \(\int \partial X \bar{\partial}X\)
  • \(X=X+2\pi R\)
  • T-duality

\[\tilde{R}=\frac{\alpha'}{R}\]

 

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