"Renormalization"의 두 판 사이의 차이

수학노트
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imported>Pythagoras0
 
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22번째 줄: 22번째 줄:
 
* methods of regularization
 
* methods of regularization
 
** momentum regularization (modify the propagator by introducing cutoff dependent mass couplings)
 
** momentum regularization (modify the propagator by introducing cutoff dependent mass couplings)
** lattice regulatization (replace $R^d$ by a lattice, uses a small space cutoff)
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** lattice regulatization (replace <math>R^d</math> by a lattice, uses a small space cutoff)
 
** dimensional regularization
 
** dimensional regularization
 
* root of the problem
 
* root of the problem
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* Renormalization: an introduction to renormalization, the renormalization John C. Collins
 
* Renormalization: an introduction to renormalization, the renormalization John C. Collins
 
* Kevin Costello, Renormalization and Effective Field Theory http://www.ams.org/bookstore-getitem/item=surv-170
 
* Kevin Costello, Renormalization and Effective Field Theory http://www.ams.org/bookstore-getitem/item=surv-170
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* [[2009년 books and articles|찾아볼 수학책]]
  
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==expositions==
 
==expositions==
 
* Gerard t Hooft, Reflections on the renormalization procedure for gauge theories, arXiv:1604.06257 [hep-th], April 21 2016, http://arxiv.org/abs/1604.06257
 
* Gerard t Hooft, Reflections on the renormalization procedure for gauge theories, arXiv:1604.06257 [hep-th], April 21 2016, http://arxiv.org/abs/1604.06257
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[[분류:math and physics]]
 
[[분류:math and physics]]
 
[[분류:QFT]]
 
[[분류:QFT]]
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[[분류:migrate]]
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==메타데이터==
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===위키데이터===
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* ID :  [https://www.wikidata.org/wiki/Q281778 Q281778]
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===Spacy 패턴 목록===
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* [{'LOWER': 'effective'}, {'LOWER': 'field'}, {'LEMMA': 'theory'}]

2021년 2월 17일 (수) 03:00 기준 최신판

renormalization

  • way of pulling out sensible answers from Feynman diagrams that explode
  • there are two parts in the renormalization program
    • regularization - the divergences must be written down in some way so that they can be compared, added and subtracted
    • renormalization proper - the various divergences must be gathered together and extracted from the rest of the calculation
  • set of techniques used to understand a given quantum field theory in a certain energy or length interval
  • easiest to grasp using functional integrals




regularization

  • the values of observable quantities cannot depend on the way we've chosen to take the cutoff (regularize)
  • introducing momentum or distance cutoff so as to render finite the large momentum or short distance limits of correlation functions
  • methods of regularization
    • momentum regularization (modify the propagator by introducing cutoff dependent mass couplings)
    • lattice regulatization (replace \(R^d\) by a lattice, uses a small space cutoff)
    • dimensional regularization
  • root of the problem
    • probability of creating particles of colossal energies
    • in terms of Feynman diagrams, the momentum in a loop can run away to infinity
  • dimensional regularization
    • regularization scheme (especially good in QCD)
    • regard the dimension as a continuous quantity
    • coupling constant changes accordingly as the dimension changes continuously
    • we get a new parameter called regularization scheme



QED renormalization



electroweak renormalization

  • spontaneous local symmetry breaking or Higgs mechanism
  • mass term for gauge field is zero in the Lagranaian, but these bosons (W,Z bosons) have mass term. To resolve this, we employ Higgs mechanism



books


expositions

articles

메타데이터

위키데이터

Spacy 패턴 목록

  • [{'LOWER': 'effective'}, {'LOWER': 'field'}, {'LEMMA': 'theory'}]