Classical and quantum mechanics of non-Abelian Chern-Simons particles
Abstract
We investigate the classical and quantum properties of a system of SU ( N) non-Abelian Chern-Simons (NACS) particles. After a brief introduction to the subject of NACS particles, we first discuss the symplectic structure of various SU ( N) coadjoint orbits which are the reduced phase space of SU ( N) internal degrees of freedom or isospins. A complete Dirac constraint analysis is carried out on each orbit and the Dirac bracket relations among the isospin variables are calculated. Then, the spatial degrees of freedom and interaction with external gauge field are introduced by considering the total reduced phase space which is given by an associated bundle whose fiber is one of the coadjoint orbits. Finally, the theory is quantized by using the coherent state method and various quantum mechanical properties are discussed in this approach. In particular, a coherent state representation of the Knizhnik-Zamolodchikov equation is given and possible solutions in this representation are discussed.
- Publication:
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Nuclear Physics B
- Pub Date:
- February 1996
- DOI:
- 10.1016/0550-3213(95)00669-9
- arXiv:
- arXiv:hep-th/9509135
- Bibcode:
- 1996NuPhB.462..551O
- Keywords:
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- High Energy Physics - Theory
- E-Print:
- 28 pages, Revtex, revised version