"Various concepts of limit in statistical physics"의 두 판 사이의 차이

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(피타고라스님이 이 페이지의 이름을 various concepts of limit in statistical physics로 바꾸었습니다.)
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<h5 style="margin: 0px; line-height: 2em;">concept of limit</h5>
 
<h5 style="margin: 0px; line-height: 2em;">concept of limit</h5>
  
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*  notations<br>
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** N : number of sites
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** a : lattice spacing
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** V : volume
 
* scaling limit
 
* scaling limit
 
*  continuum limit<br>
 
*  continuum limit<br>
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** [http://en.wikipedia.org/wiki/Thermodynamic_limit ]http://en.wikipedia.org/wiki/Thermodynamic_limit<br>
 
** [http://en.wikipedia.org/wiki/Thermodynamic_limit ]http://en.wikipedia.org/wiki/Thermodynamic_limit<br>
 
*  infrared limit<br>
 
*  infrared limit<br>
**   <br>
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**  sending V to infinity, while keeping a constant<br>
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*  ultraviolet limit<br>
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The c-theorem implies that the infra-red limit, where the scale<br> goes to innity, and the ultra-violet limit, where the scale vanishes, are xed points<br> of the renormalisation group.
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http://iopscience.iop.org/1126-6708/2000/03/008/pdf/1126-6708_2000_03_008.pdf
  
 
 
 
 

2010년 8월 19일 (목) 20:33 판

introduction

 

 

 

concept of limit
  • notations
    • N : number of sites
    • a : lattice spacing
    • V : volume
  • scaling limit
  • continuum limit
    • sending the lattice spacing a to zero, and the number N of sites to infinity, while keeping the volume V=Na constant
  • thermodynamic limit
  • infrared limit
    • sending V to infinity, while keeping a constant
  • ultraviolet limit

 

 

The c-theorem implies that the infra-red limit, where the scale
goes to innity, and the ultra-violet limit, where the scale vanishes, are xed points
of the renormalisation group.

http://iopscience.iop.org/1126-6708/2000/03/008/pdf/1126-6708_2000_03_008.pdf

 

 

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