English

Numerical Calculation of the Neutral Fermion Gap at $\nu=5/2$

Strongly Correlated Electrons 2011-07-13 v4

Abstract

We present the first numerical computation of the neutral fermion gap, Δψ\Delta_\psi, in the ν=5/2\nu=5/2 quantum Hall state, which is analogous to the energy gap for a Bogoliubov-de Gennes quasiparticle in a superconductor. We find Δψ0.027e2ϵ0\Delta_\psi \approx 0.027 \frac{e^2}{\epsilon \ell_0}, comparable to the charge gap, and discuss the implications for topological quantum information processing. We also deduce an effective Fermi velocity vFv_F for neutral fermions from the low-energy spectra for odd numbers of electrons, and thereby obtain a correlation length ξψ=vF/Δψ1.30\xi_{\psi}={v_F}/\Delta_{\psi} \approx 1.3\, \ell_0. We comment on the implications of our results for electronic mechanisms of superconductivity more generally.

Keywords

Cite

@article{arxiv.1008.4173,
  title  = {Numerical Calculation of the Neutral Fermion Gap at $\nu=5/2$},
  author = {Parsa Bonderson and Adrian E. Feiguin and Chetan Nayak},
  journal= {arXiv preprint arXiv:1008.4173},
  year   = {2011}
}

Comments

Exposition simplified and shortened. Fermi velocity calculated at 3 more system sizes; parabolic fits improved. Abstract in listing fixed to agree with abstract in paper