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Topological Investigation of the Fractionally Quantized Hall Conductivity

T. Asselmeyer, R. Keiper

cond-matarXiv:cond-mat/9508055

Abstract

Using the fiber bundle concept developed in geometry and topology, the fractionally quantized Hall conductivity is discussed in the relevant many--particle configuration space. Electron-magnetic field and electron-electron interactions under FQHE conditions are treated as functional connections over the torus, the torus being the underlying two-dimensional manifold. Relations to the (2+1)--dimensional Chern--Simons theory are indicated. The conductivity being a topological invariant is given as e2h times a linking number which is the quotient of the winding numbers of the self-consistent field and the magnetic field, respectively. Odd denominators are explained by the two spin structures which have been considered for the FQHE correlated electron system.

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