"Hirota bilinear method"의 두 판 사이의 차이

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==introduction==
 
==introduction==
  
 
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==Advantages of the bilinear formalism:==
 
==Advantages of the bilinear formalism:==
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* Suitable for classification: the bilinear form strongly restricts the freedom of changing dependent variables.
 
* Suitable for classification: the bilinear form strongly restricts the freedom of changing dependent variables.
  
 
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example
 
example
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http://www.thehcmr.org/issue2_1/soliton.pdf
 
http://www.thehcmr.org/issue2_1/soliton.pdf
  
 
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==history==
 
  
* http://www.google.com/search?hl=en&tbs=tl:1&q=
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==related items==
 
==related items==
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* [[bilinear mathematics]]
 
* [[bilinear mathematics]]
  
 
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==계산 리소스==
 
==계산 리소스==
 
* https://docs.google.com/file/d/0B8XXo8Tve1cxVjBqOGE1OU00VkU/edit
 
* https://docs.google.com/file/d/0B8XXo8Tve1cxVjBqOGE1OU00VkU/edit
 
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==encyclopedia==
 
==encyclopedia==
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* http://en.wikipedia.org/wiki/
 
* http://en.wikipedia.org/wiki/
 
* http://mathworld.wolfram.com/HirotaEquation.html
 
* http://mathworld.wolfram.com/HirotaEquation.html
* http://www.scholarpedia.org/
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* [http://eom.springer.de/ http://eom.springer.de]
 
* http://www.proofwiki.org/wiki/
 
* Princeton companion to mathematics([[2910610/attachments/2250873|Companion_to_Mathematics.pdf]])
 
 
 
 
 
  
 
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==books==
 
==books==
  
 
* Yoshimasa matsuno Bilinear Transformation Method
 
* Yoshimasa matsuno Bilinear Transformation Method
* Jarmo Hietarinta: Introduction to the Hirota Bilinear Method, volume 638 of Lect. Notes Phys. New York: Springer-Verlag 2004.
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* Hietarinta, J. 1997. “Introduction to the Hirota Bilinear Method.” In Integrability of Nonlinear Systems, edited by Y. Kosmann-Schwarzbach, B. Grammaticos, and K. M. Tamizhmani, 95–103. Lecture Notes in Physics 495. Springer Berlin Heidelberg. http://link.springer.com/chapter/10.1007/BFb0113694. http://arxiv.org/abs/solv-int/9708006
* [[2011년 books and articles]]
 
* http://library.nu/search?q=
 
* http://library.nu/search?q=
 
 
 
 
 
  
 
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==expositions==
 
==expositions==
  
* Bilinear Formalism in Soliton TheoryJ. Satsuma http://www.springerlink.com/content/pv618enuumbm98bx/
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* Satsuma, J. 2004. “Bilinear Formalism in Soliton Theory.” In Integrability of Nonlinear Systems, edited by Yvette Kosmann-Schwarzbach, K. M. Tamizhmani, and Basil Grammaticos, 251–268. Lecture Notes in Physics 638. Springer Berlin Heidelberg. http://link.springer.com/chapter/10.1007/978-3-540-40962-5_8
 
* [http://users.utu.fi/hietarin/Bangalore.pdf Hirota’s bilinear method and integrability] Jarmo Hietarinta, 2008
 
* [http://users.utu.fi/hietarin/Bangalore.pdf Hirota’s bilinear method and integrability] Jarmo Hietarinta, 2008
* Goldstein, P. P. 2007. “Hints on the Hirota Bilinear Method”. <em>Acta Physica Polonica A</em> 112 (12월 1): 1171. http://adsabs.harvard.edu/abs/2007AcPPA.112.1171G
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* Goldstein, P. P. 2007. “Hints on the Hirota Bilinear Method.Acta Physica Polonica A 112 (December): 1171.
* [http://arxiv.org/abs/solv-int/9708006 Introduction to the Hirota bilinear method]  J. Hietarinta, 1997
 
  
 
 
 
 
 
  
 
==articles==
 
==articles==
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* Chen, Junchao, Yong Chen, Bao-Feng Feng, Ken-ichi Maruno, and Yasuhiro Ohta. “An Integrable Semi-Discretization of the Coupled Yajima--Oikawa System.” arXiv:1509.06996 [math-Ph, Physics:nlin], September 21, 2015. http://arxiv.org/abs/1509.06996.
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* Delisle, Laurent. “A N=2 Extension of the Hirota Bilinear Formalism and the Supersymmetric KdV Equation.” arXiv:1509.03137 [hep-Th, Physics:math-Ph], September 10, 2015. http://arxiv.org/abs/1509.03137.
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* Bai, Yong-Qiang, and Yan-Jun LV. “Bilinear B"acklund Transformations and Lax Pair for the Boussinesq Equation.” arXiv:1412.1910 [nlin], December 5, 2014. http://arxiv.org/abs/1412.1910.
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* Bazeia, D., L. Losano, and J. L. R. Santos. “Solitonic Traveling Waves in Galileon Theory.” arXiv:1408.3822 [hep-Th, Physics:math-Ph], August 17, 2014. http://arxiv.org/abs/1408.3822.
  
* [http://front.math.ucdavis.edu/0905.3776 Integrable deformations of CFTs and the discrete Hirota equations]<br>
 
**  Werner Nahm, Sinéad Keegan, 2009<br>
 
*  
 
 
* http://www.ams.org/mathscinet
 
* http://www.zentralblatt-math.org/zmath/en/
 
* http://arxiv.org/
 
* http://www.pdf-search.org/
 
* http://pythagoras0.springnote.com/
 
* [http://math.berkeley.edu/%7Ereb/papers/index.html http://math.berkeley.edu/~reb/papers/index.html]
 
* http://dx.doi.org/
 
 
 
 
 
 
 
 
==question and answers(Math Overflow)==
 
 
* http://mathoverflow.net/search?q=
 
* http://mathoverflow.net/search?q=
 
 
 
 
 
 
 
 
==blogs==
 
 
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* http://ncatlab.org/nlab/show/HomePage
 
 
 
 
  
 
 
 
==experts on the field==
 
 
* http://arxiv.org/
 
 
 
 
 
 
 
 
==links==
 
 
* [http://detexify.kirelabs.org/classify.html Detexify2 - LaTeX symbol classifier]
 
* [http://pythagoras0.springnote.com/pages/1947378 수식표현 안내]
 
* [http://www.research.att.com/%7Enjas/sequences/index.html The On-Line Encyclopedia of Integer Sequences]
 
* http://functions.wolfram.com/
 
 
[[분류:integrable systems]]
 
[[분류:integrable systems]]
 
[[분류:math and physics]]
 
[[분류:math and physics]]
[[분류:math and physics]]
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2020년 12월 28일 (월) 04:21 기준 최신판

introduction

Advantages of the bilinear formalism:

  • Multisoliton solutions easy to construct.
  • The dependent variables are usually tau-functions, with good properties.
  • Natural for the Sato theory, which explains hierarchies of integrable equations (Jimbo and Miwa)
  • Suitable for classification: the bilinear form strongly restricts the freedom of changing dependent variables.



example

http://www.thehcmr.org/issue2_1/soliton.pdf




related items



계산 리소스


encyclopedia



books


expositions


articles

  • Chen, Junchao, Yong Chen, Bao-Feng Feng, Ken-ichi Maruno, and Yasuhiro Ohta. “An Integrable Semi-Discretization of the Coupled Yajima--Oikawa System.” arXiv:1509.06996 [math-Ph, Physics:nlin], September 21, 2015. http://arxiv.org/abs/1509.06996.
  • Delisle, Laurent. “A N=2 Extension of the Hirota Bilinear Formalism and the Supersymmetric KdV Equation.” arXiv:1509.03137 [hep-Th, Physics:math-Ph], September 10, 2015. http://arxiv.org/abs/1509.03137.
  • Bai, Yong-Qiang, and Yan-Jun LV. “Bilinear B"acklund Transformations and Lax Pair for the Boussinesq Equation.” arXiv:1412.1910 [nlin], December 5, 2014. http://arxiv.org/abs/1412.1910.
  • Bazeia, D., L. Losano, and J. L. R. Santos. “Solitonic Traveling Waves in Galileon Theory.” arXiv:1408.3822 [hep-Th, Physics:math-Ph], August 17, 2014. http://arxiv.org/abs/1408.3822.