Quasiparticle agglomerates in Read-Rezayi and anti Read-Rezayi state
arXiv:1207.4604 · doi:10.1088/0031-8949/2012/T151/014052
Abstract
We calculate the dominant excitations for the -level () Read-Rezayi (RR) states and their particle-hole conjugates, the anti Read-Rezayi (), proposed for quantum Hall states. These states are supposed to be build over the second Landau level with total filling factor with for RR and for . In the -level RR states, based on parafermions, the dominant excitations are the fundamental quasiparticles with fractional charge , with the electron charge, if . For k=4 the single-qp and the 2-agglomerate, with charge , have the same scaling and both dominate, while for the 2-agglomerates are dominant. Anyway the dominance of the 2-agglomerates can be affected by the presence of environmental renormalizations. For all the -level states the single-qp and the 2-agglomerate have the same scaling and both dominate. In this case only the presence of environmental renormalizations can make one dominant over the other. We determine the conditions where the environmental renormalizations of the charged and neutral modes make dominant the Abelian 2-agglomerates over the non-Abelian single-quasiparticles in the two models and for any value of . We conclude observing that, according these predictions, the dominance of 2-agglomerates, at very low energies for the , can be an interesting indication supporting the validity of the anti-Pfaffian model in comparison to the Pfaffian.
6 pages, to be published in the Proceedings of the Conference on the Frontiers of Quantum and Mesoscopic Thermodynamics (FQMT11)
References in corpus (11)
- Non-Abelian Anyons and Topological Quantum Computation
- Particle-hole symmetry and the Pfaffian state
- Particle-Hole Symmetry and the Quantum Hall State
- Anyons and the quantum Hall effect - a pedagogical review
- Observation of neutral modes in the fractional quantum Hall regime
- Local Charge of the nu=5/2 Fractional Quantum Hall State
- Anomalous charge tunneling in the fractional quantum Hall edge states at filling factor ν= 5/2
- Charge tunneling in fractional edge channels
- Quantum Hall States at
- Relevance of multiple-quasiparticle tunneling between edge states at ν=p/(2np+1)
- Partition Functions of Non-Abelian Quantum Hall States