"Lindström–Gessel–Viennot lemma"의 두 판 사이의 차이
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==introduction== | ==introduction== | ||
31번째 줄: | 29번째 줄: | ||
http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p | http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p | ||
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[[분류:math and physics]] | [[분류:math and physics]] | ||
[[분류:dimer model]] | [[분류:dimer model]] | ||
[[분류:migrate]] | [[분류:migrate]] |
2020년 11월 14일 (토) 11:06 판
introduction
- in physics, fermion integral formula
- Determinants, Paths, and Plane Partitions http://people.brandeis.edu/~gessel/homepage/papers/pp.pdf
- http://qchu.wordpress.com/2009/11/17/the-lindstrom-gessel-viennot-lemma/
- http://en.wikipedia.org/wiki/Lindstr%C3%B6m%E2%80%93Gessel%E2%80%93Viennot_lemma
http://math.arizona.edu/~caseyw/LGVmaster.pdf
Condensed Matter http://www.andrew.cmu.edu/user/bsauerwi/condensed.htm
application to hexagonal tiling
http://www.scribd.com/doc/62973687/17/The-Gessel-Viennot-Lemma 40p