Quantum simulation of conductivity plateaux and fractional quantum Hall effect using ultracold atoms

被引:6
作者
Barberan, Nuria [1 ]
Dagnino, Daniel [2 ]
Angel Garcia-March, Miguel [1 ,3 ]
Trombettoni, Andrea [4 ,5 ,6 ]
Taron, Josep [1 ,7 ]
Lewenstein, Maciej [3 ,8 ]
机构
[1] Univ Barcelona, Fac Fis, Dept Estructura & Constituents Materia, E-08028 Barcelona, Spain
[2] CSIC, Inst Marine Sci, Barcelona Ctr Subsurface Imaging, E-08003 Barcelona, Spain
[3] Barcelona Inst Sci & Technol, ICFO Inst Ciencies Foton, Castelldefels 08860, Barcelona, Spain
[4] CNR IOM DEMOCRITOS Simulat Ctr, I-34136 Trieste, Italy
[5] SISSA, I-34136 Trieste, Italy
[6] INFN, Sez Trieste, I-34136 Trieste, Italy
[7] Inst Ciencies Cosmos, E-08028 Barcelona, Spain
[8] ICREA Inst Catalana Recerca & Estudis Avancats, E-08010 Barcelona, Spain
来源
NEW JOURNAL OF PHYSICS | 2015年 / 17卷
关键词
fractional quantum Hall effect; transport phenomena in ultracold quantum gases; impurities in ultracold quantum gases; quantum simulators; CONDUCTANCE; ABSENCE; NUMBER; EDGE;
D O I
10.1088/1367-2630/17/12/125009
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We analyze the role of impurities in the fractional quantum Hall effect using a highly controllable system of ultracold atoms. We investigate the mechanism responsible for the formation of plateaux in the resistivity/conductivity as a function of the applied magnetic field in the lowest Landau level regime. To this aim, we consider an impurity immersed in a small cloud of an ultracold quantum Bose gas subjected to an artificial magnetic field. We consider scenarios corresponding to experimentally realistic systems with gauge fields induced by rotation of the trapping parabolic potential. Systems of this kind are adequate to simulate quantum Hall effects in ultracold atom setups. We use exact diagonalization for few atoms and to emulate transport equations, we analyze the time evolution of the system under a periodic perturbation. We provide a theoretical proposal to detect the up-to-now elusive presence of strongly correlated states related to fractional filling factors in the context of ultracold atoms. We analyze the conditions under which these strongly correlated states are associated with the presence of the resistivity/conductivity plateaux. Our main result is the presence of a plateau in a region, where the transfer between localized and non-localized particles takes place, as a necessary condition to maintain a constant value of the resistivity/conductivity as the magnetic field increases.
引用
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页数:11
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