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Quantum computation with quasiparticles of the Fractional Quantum Hall Effect

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arxiv cond-mat/0110193 v1 pith:W6K7PF57 submitted 2001-10-10 cond-mat.mes-hall quant-ph

classification cond-mat.mes-hallquant-ph
keywords quantumcomputationfqhequasiparticlesapproachfractionalliquidstatistics
verification ladder T0 review T1 audit T2 compute T3 formal
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We propose an approach that enables implementation of anyonic quantum computation in systems of antidots in the two-dimensional electron liquid in the FQHE regime. The approach is based on the adiabatic transfer of FQHE quasiparticles in the antidot systems, and uses their fractional statistics to perform quantum logic. Advantages of our scheme over other semiconductor-based proposals of quantum computation include the energy gap in the FQHE liquid that suppresses decoherence, and the topological nature of quasiparticle statistics that makes it possible to entangle two quasiparticles without their direct dynamic interaction.

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  1. Fractional Quantum Hall Anyons via the Algebraic Topology of Exotic Flux Quanta

    cond-mat.mes-hall 2025-05 conditional novelty 6.0 of 10

    Fractional quantum Hall anyons are re-derived from a non-Lagrangian flux quantization in 2-Cohomotopy, with new predictions for torus degeneracy and defect anyons.

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