"Virasoro algebra"의 두 판 사이의 차이

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==articles==
 
==articles==
  
* [http://www.springerlink.com/content/kn757431511020g2/ Quantum Group Structure of the q-Deformed Virasoro Algebra]<br>
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* Hu, Haihong. “Quantum Group Structure of the Q-Deformed Virasoro Algebra.” Letters in Mathematical Physics 44, no. 2 (April 1, 1998): 99–103. doi:10.1023/A:1007475521529. http://www.springerlink.com/content/kn757431511020g2/  
** Haihong Hu
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* Goddard, P., A. Kent, and D. Olive. “Unitary Representations of the Virasoro and Super-Virasoro Algebras.” Communications in Mathematical Physics 103, no. 1 (1986): 105–19. http://projecteuclid.org/DPubS?service=UI&version=1.0&verb=Display&handle=euclid.cmp/1104114626
* [http://projecteuclid.org/DPubS?service=UI&version=1.0&verb=Display&handle=euclid.cmp/1104114626 Unitary representations of the Virasoro and super-Virasoro algebras]<br>
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* Friedan, Daniel, Zongan Qiu, and Stephen Shenker. “Conformal Invariance, Unitarity, and Critical Exponents in Two Dimensions.” Physical Review Letters 52, no. 18 (April 30, 1984): 1575–78. doi:10.1103/PhysRevLett.52.1575. http://prola.aps.org/abstract/PRL/v52/i18/p1575_1
** P. Goddard, A. Kent and D. Olive, Comm. Math. Phys. 103, no. 1 (1986), 105–119.
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* Feigin, B. L., and D. B. Fuchs. “Verma Modules over the Virasoro Algebra.” In Topology, edited by Ludwig D. Faddeev and Arkadii A. Mal’cev, 230–45. Lecture Notes in Mathematics 1060. Springer Berlin Heidelberg, 1984. http://link.springer.com/chapter/10.1007/BFb0099939.
 
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* Belavin, A. A., A. M. Polyakov, and A. B. Zamolodchikov. “Infinite Conformal Symmetry in Two-Dimensional Quantum Field Theory.” Nuclear Physics B 241, no. 2 (July 23, 1984): 333–80. doi:10.1016/0550-3213(84)90052-X.
* [http://prola.aps.org/abstract/PRL/v52/i18/p1575_1 Conformal invariance, unitarity and critical exponents in two dimensions]<br>
 
** Friedan, D., Qiu, Z. and Shenker, S., Phys. Rev. Lett. 52 (1984) 1575-1578
 
 
 
* [http://www.springerlink.com/content/122636vk15g86472/ Verma modules over the Virasoro algebra]<br>
 
** B.L. Feigin and D.B. Fuchs, Lecture Notes in Math. 1060 (1984), pp. 230–245.
 
 
 
* [http://dx.doi.org/10.1016/0550-3213%2884%2990052-X Infinite conformal symmetry in two-dimensional quantum field theory]<br>
 
** Alexander Belavin, Alexander Polyakov and Alexander Zamolodchikov, Nucl. Phys. B241 (1984) 333–380
 
 
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2014년 5월 21일 (수) 17:58 판

introduction

  • Virasoro algebra could be pre-knowledge for the study of CFT
  • important results on Virasoro algebra are
    • (i)Kac Determinant Formula
    • (ii) discrete series (A. J. Wassermann, Lecture Notes on the Kac-Moody and Virasoro algebras)
    • (iii) GKO construction of discrete series (this is added on 22nd of Oct, 2007)
  • representation theory (see



Virasoro algebra

  • Lie algebra of vector fields on the unit circle

\[f(z)\frac{d}{dz}\]

  • commutator

\[[f(z)\frac{d}{dz},g(z)\frac{d}{dz}]=(fg'-f'g)\frac{d}{dz}\]

  • Virasoro generators

\[L_n=-z^{n+1}\frac{d}{dz}\]

  • they satisfy the following relation (Witt algebra)

\[[L_m,L_n]=(m-n)L_{m+n}\]

  • Homological algebra tells that there is 1-dimensional central extension of Witt algebra
  • taking a central extension of lie algebras, we get the Virasoro algebra \(L_n,n\in \mathbb{Z}\)

\[[c,L_n]=0\] \[[L_m,L_n]=(m-n)L_{m+n}+\frac{c}{12}(m^3-m)\delta_{m+n}\]



central charge and conformal weight

  • highest weight representation
  • \(c\) is called the central charge
  • \(h\) is sometimes called a conformal dimension or conformal weights



Verma module



unitarity and ghost

  • unitarity means the inner product in the space of states is positive definite (or semi-positive definite)
  • A state with negative norm is called a ghost.
  • If a ghost is found on any level the represetation cannot occur in a unitary theory



unitary irreducible representations



affine Lie algebras



character of minimal models



No-Ghost theorem


관련된 항목들


매스매티카 파일 및 계산 리소스


encyclopedia


questions


exposition


articles

  • Hu, Haihong. “Quantum Group Structure of the Q-Deformed Virasoro Algebra.” Letters in Mathematical Physics 44, no. 2 (April 1, 1998): 99–103. doi:10.1023/A:1007475521529. http://www.springerlink.com/content/kn757431511020g2/
  • Goddard, P., A. Kent, and D. Olive. “Unitary Representations of the Virasoro and Super-Virasoro Algebras.” Communications in Mathematical Physics 103, no. 1 (1986): 105–19. http://projecteuclid.org/DPubS?service=UI&version=1.0&verb=Display&handle=euclid.cmp/1104114626
  • Friedan, Daniel, Zongan Qiu, and Stephen Shenker. “Conformal Invariance, Unitarity, and Critical Exponents in Two Dimensions.” Physical Review Letters 52, no. 18 (April 30, 1984): 1575–78. doi:10.1103/PhysRevLett.52.1575. http://prola.aps.org/abstract/PRL/v52/i18/p1575_1
  • Feigin, B. L., and D. B. Fuchs. “Verma Modules over the Virasoro Algebra.” In Topology, edited by Ludwig D. Faddeev and Arkadii A. Mal’cev, 230–45. Lecture Notes in Mathematics 1060. Springer Berlin Heidelberg, 1984. http://link.springer.com/chapter/10.1007/BFb0099939.
  • Belavin, A. A., A. M. Polyakov, and A. B. Zamolodchikov. “Infinite Conformal Symmetry in Two-Dimensional Quantum Field Theory.” Nuclear Physics B 241, no. 2 (July 23, 1984): 333–80. doi:10.1016/0550-3213(84)90052-X.