English

Interlayer coherence and entanglement in bilayer quantum Hall states at filling factor $\nu=2/\lambda$

Mesoscale and Nanoscale Physics 2014-11-04 v2 Mathematical Physics math.MP Quantum Physics

Abstract

We study coherence and entanglement properties of the state space of a composite bi-fermion (two electrons pierced by λ\lambda magnetic flux lines) at one Landau site of a bilayer quantum Hall system. In particular, interlayer imbalance and entanglement (and its fluctuations) are analyzed for a set of U(4)U(4) coherent (\emph{quasiclassical}) states generalizing the standard pseudospin U(2)U(2) coherent states for the spin-frozen case. The interplay between spin and pseudospin degrees of freedom opens new possibilities with regard to the spin-frozen case. Actually, spin degrees of freedom make interlayer entanglement more effective and robust under perturbations than in the spin-frozen situation, mainly for a large number of flux quanta λ\lambda. Interlayer entanglement of an equilibrium thermal state and its dependence with temperature and bias voltage is also studied for a pseudo-Zeeman interaction.

Keywords

Cite

@article{arxiv.1403.2443,
  title  = {Interlayer coherence and entanglement in bilayer quantum Hall states at filling factor $\nu=2/\lambda$},
  author = {M. Calixto and E. Pérez-Romero},
  journal= {arXiv preprint arXiv:1403.2443},
  year   = {2014}
}

Comments

LaTeX, 18 pages, 22 figures, substantial improvement (5 additional pages). To appear in J. Phys. Condensed Matter

R2 v1 2026-06-22T03:23:59.529Z