中文

$W_{1+\infty}$ Dynamics of Edge Excitations in the Quantum Hall Effect

凝聚态物理 2015-06-25 v1 高能物理 - 理论

摘要

Quantum Hall universality classes can be classified by W1+W_{1+\infty} symmetry. We show that this symmetry also governs the dynamics of quantum edge excitations. The Hamiltonian of interacting electrons in the fully-filled first Landau level is expressed in terms of W1+W_{1+\infty} generators. The spectra for both the Coulomb and generic short-range interactions are thus found algebraically. We prove the one-dimensional bosonization of edge excitations in the limit of large number of particles. Moreover, the subleading corrections are given by the higher-spin W1+W_{1+\infty} generators, which measure the radial fluctuations of the electron density. The resulting spectrum for the Coulomb interaction contains a logarithmic enhancement, in agreement with experimental observations. The spectrum for generic short-range interactions is subleading and reproduces the classical capillary frequencies. These results are also extended to fractional filling by using symmetry arguments.

引用

@article{arxiv.cond-mat/9407095,
  title  = {$W_{1+\infty}$ Dynamics of Edge Excitations in the Quantum Hall Effect},
  author = {A. Cappelli and C. A. Trugenberger and G. R. Zemba},
  journal= {arXiv preprint arXiv:cond-mat/9407095},
  year   = {2015}
}

备注

TeX file (needs harvmac), 39 pages, preprint MPI-PhT/94-35 and DFTT-16/94