"Quantum dilogarithm"의 두 판 사이의 차이

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==introduction==
  
 
* [http://pythagoras0.springnote.com/pages/7978406 양자 다이로그 함수(quantum dilogarithm)]
 
* [http://pythagoras0.springnote.com/pages/7978406 양자 다이로그 함수(quantum dilogarithm)]
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<h5 style="margin: 0px; line-height: 2em;">근사 공식==
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==근사 공식==
  
 
* <math>q=e^{-t}</math> and as the t goes 0 (i.e. as q goes to 1)<br>
 
* <math>q=e^{-t}</math> and as the t goes 0 (i.e. as q goes to 1)<br>
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<h5 style="margin: 0px; line-height: 2em;">Knot and invariants from quantum dilogarithm==
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==Knot and invariants from quantum dilogarithm==
  
 
* '''[Kashaev1995] '''<br>
 
* '''[Kashaev1995] '''<br>
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==related items==
  
 
* [[1 Fermion summation formula - quasi-particle interpretation|Boson and Fermion summation form]]<br>
 
* [[1 Fermion summation formula - quasi-particle interpretation|Boson and Fermion summation form]]<br>
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==articles==
  
 
* Keller, http://arxiv.org/abs/1102.4148
 
* Keller, http://arxiv.org/abs/1102.4148
  
 
* Kashaev, http://arxiv.org/abs/1104.4630[[분류:개인노트]]
 
* Kashaev, http://arxiv.org/abs/1104.4630[[분류:개인노트]]

2012년 10월 28일 (일) 17:45 판

introduction

 

 

근사 공식

  • \(q=e^{-t}\) and as the t goes 0 (i.e. as q goes to 1)

\(\sum_{n=0}^{\infty}\frac{q^{\frac{A}{2}n^2+cn}}{(q)_n}\sim\exp(\frac{C}{t})\)

 

여기서 C는 로저스 다이로그 함수 (Roger's dilogarithm) 의 어떤 값에서의 합

 

 

 

Knot and invariants from quantum dilogarithm

  • [Kashaev1995] 
  • a link invariant, depending on a positive integer parameter N, has been defined via three-dimensional interpretation of the cyclic quantum dilogarithm
  • The construction can be considered as an example of the simplicial (combinatorial) version of the three-dimensional TQFT
  • this invariant is in fact a quantum generalization of the hyperbolic volume invariant.
  • It is possible that the simplicialTQFT, defined in terms of the cyclic quantum dilogarithm, can be associated with quantum 2 + 1-dimensional gravity.

 

 

 

quantum dilogarithm identities

 

 

 

 

related items

 

expositions

 

 

articles