English

Disorder Enhanced Nuclear Spin Relaxation at Landau Level Filling Factor One

Mesoscale and Nanoscale Physics 2015-06-01 v2

Abstract

The nuclear spin relaxation rate (1/T1T_1) is measured for GaAs two-dimensional electron systems in the quantum Hall regime with an all-electrical technique for agitating and probing the nuclear spins. A "tilted plateau" feature is observed near the Landau level filling factor ν=1\nu=1 in 1/T1T_1 versus ν\nu. Both width and magnitude of the plateau increase with decreasing electron density. At low temperatures, 1/T1T_1 exhibits an Arrhenius temperature dependence within the tilted plateau regime. The extracted energy gaps are up to two orders of magnitude smaller than the corresponding charge transport gaps. These results point to a nontrivial mechanism for the disorder enhanced nuclear spin relaxation, in which microscopic inhomogeneities play a key role for the low energy spin excitations related to skyrmions.

Keywords

Cite

@article{arxiv.1504.01980,
  title  = {Disorder Enhanced Nuclear Spin Relaxation at Landau Level Filling Factor One},
  author = {Tong Guan and Benedikt Friess and Yongqing Li and Shishen Yan and Vladimir Umansky and Klaus von Klitzing and Jurgen H. Smet},
  journal= {arXiv preprint arXiv:1504.01980},
  year   = {2015}
}

Comments

7 pages, 4 figures