"Transfer matrix in statistical mechanics"의 두 판 사이의 차이

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==introduction==
  
 
* transfer matrix is builtup from matrices of  Boltzmann weights
 
* transfer matrix is builtup from matrices of  Boltzmann weights
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==history==
  
 
* http://www.google.com/search?hl=en&tbs=tl:1&q=
 
* http://www.google.com/search?hl=en&tbs=tl:1&q=
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==related items==
  
 
* [[#]]<br>
 
* [[#]]<br>
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==encyclopedia==
  
 
* http://en.wikipedia.org/wiki/
 
* http://en.wikipedia.org/wiki/
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==expositions==
  
 
* Anon.1980. The Ruelle-Araki Transfer Operator in Classical Statistical Mechanics. Vol. 123. Berlin/Heidelberg: Springer-Verlag.[http://www.springerlink.com/content/f12j034740601kjx/. ]http://www.springerlink.com/content/f12j034740601kjx/.<br>  <br> 
 
* Anon.1980. The Ruelle-Araki Transfer Operator in Classical Statistical Mechanics. Vol. 123. Berlin/Heidelberg: Springer-Verlag.[http://www.springerlink.com/content/f12j034740601kjx/. ]http://www.springerlink.com/content/f12j034740601kjx/.<br>  <br> 
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==question and answers(Math Overflow)==
  
 
* http://mathoverflow.net/search?q=
 
* http://mathoverflow.net/search?q=
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==blogs==
  
 
*  구글 블로그 검색<br>
 
*  구글 블로그 검색<br>
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==experts on the field==
  
 
* http://arxiv.org/
 
* http://arxiv.org/
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==links==
  
 
* [http://detexify.kirelabs.org/classify.html Detexify2 - LaTeX symbol classifier]
 
* [http://detexify.kirelabs.org/classify.html Detexify2 - LaTeX symbol classifier]

2012년 10월 28일 (일) 18:09 판

introduction

  • transfer matrix is builtup from matrices of  Boltzmann weights
  • trace of monodromy matrix is the transfer matrix
  • finding eigenvalues and eigenvectors of transfer matrix is crucial
  • Bethe ansatz equation is used to find the eigenvectors and eigenvalues of the transfer matrix
  • partition function = trace of power of transfer matrices
  • so the partition function  is calculated in terms of the eigenvalues of the transfer matrix
  • then the problem of solving the model is reduced to the computation of this trace

 

 

history

 

 

related items

 

encyclopedia

 

 

books

 

4909919

 

 

expositions

 

articles

 

 

 

question and answers(Math Overflow)

 

 

blogs

 

 

experts on the field

 

 

links