Properties of neutral and charged anyon fluids are examined, with the main focus on the question of whether or not a charged anyon fluid exhibits a superconductivity at zero and finite temperature. Quantum mechanics of anyon fluids is precisely described by Chern-Simons gauge theory. The random phase approximation (RPA), the linearized self-consistent field method (SCF), and the hydrodynamic approach employed in the early analysis of anyon fluids are all equivalent. Relations and differences between neutral and charged anyon fluids are discussed. It is necessary to go beyond RPA and the linearized SCF, and possively beyond the Hartree-Fock approximation, to correctly describe various phenomena such as the flux quantization, vortex formation, and phase transition.
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Univ KwaZulu Natal, Sch Math Stat & Comp Sci, Astrophys Res Ctr, Private Bag 54001, ZA-4000 Durban, South AfricaUniv KwaZulu Natal, Sch Math Stat & Comp Sci, Astrophys Res Ctr, Private Bag 54001, ZA-4000 Durban, South Africa
Maharaj, Sunil D.
Brassel, Byron P.
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Univ KwaZulu Natal, Sch Math Stat & Comp Sci, Astrophys Res Ctr, Private Bag 54001, ZA-4000 Durban, South AfricaUniv KwaZulu Natal, Sch Math Stat & Comp Sci, Astrophys Res Ctr, Private Bag 54001, ZA-4000 Durban, South Africa