"Tetrahedron equation"의 두 판 사이의 차이

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==articles==
 
==articles==
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* Kuniba, Atsuo, and Shouya Maruyama. “A Polynomial Formula for the Solution of 3D Reflection Equation.” arXiv:1411.7763 [math-Ph, Physics:nlin], November 28, 2014. http://arxiv.org/abs/1411.7763.
 
* Kuniba, Atsuo, Masato Okado, and Sergey Sergeev. “Tetrahedron Equation and Quantum $R$ Matrices for Modular Double of $U_q(D^{(2)}_{n+1}), U_q(A^{(2)}_{2n})$ and $U_q(C^{(1)}_{n})$.” arXiv:1409.1986 [math-Ph, Physics:nlin], September 6, 2014. http://arxiv.org/abs/1409.1986.
 
* Kuniba, Atsuo, Masato Okado, and Sergey Sergeev. “Tetrahedron Equation and Quantum $R$ Matrices for Modular Double of $U_q(D^{(2)}_{n+1}), U_q(A^{(2)}_{2n})$ and $U_q(C^{(1)}_{n})$.” arXiv:1409.1986 [math-Ph, Physics:nlin], September 6, 2014. http://arxiv.org/abs/1409.1986.
 
* Bytsko, Andrei, and Alexander Volkov. 2014. “Tetrahedron Equation, Weyl Group, and Quantum Dilogarithm.” arXiv:1407.5658 [math-Ph], July. http://arxiv.org/abs/1407.5658.
 
* Bytsko, Andrei, and Alexander Volkov. 2014. “Tetrahedron Equation, Weyl Group, and Quantum Dilogarithm.” arXiv:1407.5658 [math-Ph], July. http://arxiv.org/abs/1407.5658.
 
* Kuniba, Atsuo, and Masato Okado. “Tetrahedron Equation and Quantum R Matrices for $q$-Oscillator Representations of $U_q(A^{(2)}_{2n}), U_q(C^{(1)}_{n})$ and $U_q(D^{(2)}_{n+1})$.” arXiv:1311.4258 [math-Ph, Physics:nlin], November 17, 2013. http://arxiv.org/abs/1311.4258.
 
* Kuniba, Atsuo, and Masato Okado. “Tetrahedron Equation and Quantum R Matrices for $q$-Oscillator Representations of $U_q(A^{(2)}_{2n}), U_q(C^{(1)}_{n})$ and $U_q(D^{(2)}_{n+1})$.” arXiv:1311.4258 [math-Ph, Physics:nlin], November 17, 2013. http://arxiv.org/abs/1311.4258.
 
* Korepanov, I. G. “Tetrahedron Equation and the Algebraic Geometry.” arXiv:hep-th/9401076, January 17, 1994. http://arxiv.org/abs/hep-th/9401076.
 
* Korepanov, I. G. “Tetrahedron Equation and the Algebraic Geometry.” arXiv:hep-th/9401076, January 17, 1994. http://arxiv.org/abs/hep-th/9401076.

2014년 12월 3일 (수) 06:05 판

introduction

  • The tetrahedron equation arises as a generalization of the Yang--Baxter equation to the 2+1-dimensional quantum field theory and the 3-dimensional statistical mechanics
  • tetrahedral Zamolodchikov algebras


related items


expositions

  • Kuniba, Atsuo, and Masato Okado. ‘Tetrahedron Equation and Quantum $R$ Matrices for $q$-Oscillator Representations’. arXiv:1411.2213 [math-Ph, Physics:nlin], 9 November 2014. http://arxiv.org/abs/1411.2213.


articles

  • Kuniba, Atsuo, and Shouya Maruyama. “A Polynomial Formula for the Solution of 3D Reflection Equation.” arXiv:1411.7763 [math-Ph, Physics:nlin], November 28, 2014. http://arxiv.org/abs/1411.7763.
  • Kuniba, Atsuo, Masato Okado, and Sergey Sergeev. “Tetrahedron Equation and Quantum $R$ Matrices for Modular Double of $U_q(D^{(2)}_{n+1}), U_q(A^{(2)}_{2n})$ and $U_q(C^{(1)}_{n})$.” arXiv:1409.1986 [math-Ph, Physics:nlin], September 6, 2014. http://arxiv.org/abs/1409.1986.
  • Bytsko, Andrei, and Alexander Volkov. 2014. “Tetrahedron Equation, Weyl Group, and Quantum Dilogarithm.” arXiv:1407.5658 [math-Ph], July. http://arxiv.org/abs/1407.5658.
  • Kuniba, Atsuo, and Masato Okado. “Tetrahedron Equation and Quantum R Matrices for $q$-Oscillator Representations of $U_q(A^{(2)}_{2n}), U_q(C^{(1)}_{n})$ and $U_q(D^{(2)}_{n+1})$.” arXiv:1311.4258 [math-Ph, Physics:nlin], November 17, 2013. http://arxiv.org/abs/1311.4258.
  • Korepanov, I. G. “Tetrahedron Equation and the Algebraic Geometry.” arXiv:hep-th/9401076, January 17, 1994. http://arxiv.org/abs/hep-th/9401076.