Representations of composite braids and invariants for mutant knots and links in Chern-Simons field theories

Ramadevi, P. ; Govindarajan, T. R. ; Kaul, R. K. (1995) Representations of composite braids and invariants for mutant knots and links in Chern-Simons field theories Modern Physics Letters A, 10 (22). pp. 1635-1658. ISSN 0217-7323

[img]
Preview
PDF - Publisher Version
210kB

Official URL: http://www.worldscinet.com/mpla/10/1022/S021773239...

Related URL: http://dx.doi.org/10.1142/S0217732395001769

Abstract

We show that any of the new knot invariants obtained from Chern-Simons theory based on an arbitrary non-Abelian gauge group do not distinguish isotopically inequivalent mutant knots and links. In an attempt to distinguish these knots and links, we study Murakami (symmetrized version) r-strand composite braids. Salient features of the theory of such composite braids are presented. Representations of generators for these braids are obtained by exploiting properties of Hilbert spaces associated with the correlators of Wess-Zumino conformal field theories. The r-composite invariants for the knots are given by the sum of elementary Chern-Simons invariants associated with the irreducible representations in the product of r representations (allowed by the fusion rules of the corresponding Wess-Zumino conformal field theory) placed on r individual strands of the composite braid. On the other hand, composite invariants for links are given by a weighted sum of elementary multicolored Chern-Simons invariants. Some mutant links can be distinguished through the composite invariants, but mutant knots do not share this property. The results, though developed in detail within the framework of SU(2) Chern-Simons theory are valid for any other non-Abelian gauge groups.

Item Type:Article
Source:Copyright of this article belongs to World Scientific Publishing Co Pte Ltd.
ID Code:16396
Deposited On:15 Nov 2010 13:44
Last Modified:17 May 2016 01:09

Repository Staff Only: item control page