Title of article :
Unitary R-matrices for topological quantum computing
Author/Authors :
Burton، نويسنده , , P.J. and Gould، نويسنده , , M.D.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
8
From page :
89
To page :
96
Abstract :
The main problem with current approaches to quantum computing is the difficulty of establishing and maintaining entanglement. A Topological Quantum Computer (TQC) aims to overcome this by using different physical processes that are topological in nature and which are less susceptible to disturbance by the environment. In a (2+1)-dimensional system, pseudoparticles called anyons have statistics that fall somewhere between bosons and fermions. The exchange of two anyons, an effect called braiding from knot theory, can occur in two different ways. The quantum states corresponding to the two elementary braids constitute a two-state system allowing the definition of a computational basis. Quantum gates can be built up from patterns of braids and for quantum computing it is essential that the operator describing the braiding—the R-matrix—be described by a unitary operator. The physics of anyonic systems is governed by quantum groups, in particular the quasi-triangular Hopf algebras obtained from finite groups by the application of the Drinfeld quantum double construction. Their representation theory has been described in detail by Gould and Tsohantjis, and in this review article we relate the work of Gould to TQC schemes, particularly that of Kauffman.
Keywords :
R-matrix , braid group , Unitary representation , Knot Theory , Jones polynomial , Topological Quantum Computer , quasi-triangular Hopf algebra
Journal title :
Reports on Mathematical Physics
Serial Year :
2006
Journal title :
Reports on Mathematical Physics
Record number :
1585723
Link To Document :
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