"Anomalous magnetic moment of electron"의 두 판 사이의 차이

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<h5>three-loop diagrams</h5>
  
 
* 72 three-loop diagrams
 
* 72 three-loop diagrams
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* [http://eskesthai.blogspot.com/2010/12/muon.html ]<br>
 
* [http://eskesthai.blogspot.com/2010/12/muon.html ]<br>
 
* http://universe-review.ca/R15-12-QFT.htm<br>
 
* http://universe-review.ca/R15-12-QFT.htm<br>
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* http://www.aspden.org/books/2edpoc/2edpocap3.pdf<br>
 
* http://aias.us/documents/uft/a18thpaper.pdf<br>
 
  
 
 
 
 

2011년 1월 17일 (월) 11:12 판

introduction

In QFT, amplitude = sum of integrals = \(\sum_{n\text{ loops}}\) sum of integrals

in QED, anomalous electron magnetic dipole moment = 11 digits match

1.00115965219

problem as n grows

  • number of Feynman diagrams grows exponentially
  • integrals are becoming difficult
  • correction terms

[/pages/3589069/attachments/4562673 2004329152457_150.gif]

 The g factor sets the strength of an electron’s interaction with a magnetic field. In classical physics (left) magnetic lines of force (perpendicular to the page) induce a curvature in the electron’s path. In quantum electrodynamics (right) the electron interacts with the field by emitting or absorbing a photon. The event is represented in a Feynman diagram, where space extends along the horizontal axis and time moves up the vertical axis.

 

 

two-loop diagrams
  • 7 two-loop diagrams

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three-loop diagrams
  • 72 three-loop diagrams

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anaomalous muon magnetic dipole moment

 

 

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