Title of article :
Hamiltonian formulation of the W1 + ∞ minimal models Original Research Article
Author/Authors :
Andrea Cappelli، نويسنده , , Guillermo R. Zemba، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
29
From page :
610
To page :
638
Abstract :
The W1 + ∞ minimal models are conformal field theories which can describe the edge excitations of the hierarchical plateaus in the quantum Hall effect. In this paper, these models are described in very explicit terms by using a bosonic Fock space with constraints, or, equivalently, with a non-trivial Hamiltonian. The Fock space is that of the multi-component abelian conformal theories, which provide another possible description of the hierarchical plateaus; in this space, the minimal models are shown to correspond to the sub-set of states which satisfy the constraints. This reduction of degrees of freedom can also be implemented by adding a relevant interaction to the Hamiltonian, leading to a renormalization-group flow between the two theories. Next, a physical interpretation of the constraints is obtained by representing the quantum incompressible Hall fluids as generalized Fermi seas. Finally, the non-abelian statistics of the quasi-particles in the W1 + ∞. minimal models is described by computing their correlation functions in the Coulomb gas approach.
Keywords :
* Quantum Hall effect , * Conformal Field Theory , * W-algebra
Journal title :
Nuclear Physics B
Serial Year :
1999
Journal title :
Nuclear Physics B
Record number :
881308
Link To Document :
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