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Quasiparticle tunneling in the Moore-Read fractional quantum Hall State

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arxiv 0905.3607 v2 pith:YK4GU3VJ submitted 2009-05-22 cond-mat.mes-hall

Quasiparticle tunneling in the Moore-Read fractional quantum Hall State

classification cond-mat.mes-hall
keywords chargetunnelingfractionalmoore-readquantumquasiparticlesstatecontribute
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In fractional quantum Hall systems, quasiparticles of fractional charge can tunnel between the edges at a quantum point contact. Such tunneling (or backscattering) processes contribute to charge transport, and provide information on both the charge and statistics of the quasiparticles involved. Here we study quasiparticle tunneling in the Moore-Read state, in which quasiparticles of charge e/4 (non-Abelian) and e/2 (Abelian) may co-exist and both contribute to edge transport. On a disk geometry, we calculate the matrix elements for e/2 and e/4 quasiholes to tunnel through the bulk of the Moore-Read state, in an attempt to understand their relative importance. We find the tunneling amplitude for charge e/2 quasihole is exponentially smaller than that for charge e/4 quasihole, and the ratio between them can be (partially) attributed to their charge difference. We find that including long-range Coulomb interaction only has a weak effect on the ratio. We discuss briefly the relevance of these results to recent tunneling and interferometry experiments at filling factor nu=5/2.

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