Momentum-space signatures of the Anderson transition in a symplectic, two-dimensional, disordered ultracold gas

被引:1
|
作者
Arabahmadi, Ehsan [1 ]
Schumayer, Daniel [1 ]
Gremaud, Benoit [2 ,3 ,4 ]
Miniatura, Christian [3 ,4 ,5 ,6 ,7 ]
Hutchinson, David A. W. [1 ,4 ]
机构
[1] Univ Otago, Dodd Walls Ctr Photon & Quantum Technol, Dept Phys, Dunedin, New Zealand
[2] Aix Marseille Univ, Univ Toulon, Ctr Natl Rech Sci, CPT, Marseille, France
[3] CNRS UCA SU NUS NTU Int Joint Res Unit, MajuLab, Singapore, Singapore
[4] Natl Univ Singapore, Ctr Quantum Technol, Singapore, Singapore
[5] Natl Univ Singapore, Dept Phys, Singapore, Singapore
[6] Nanyang Technol Univ, Sch Phys & Math Sci, Singapore, Singapore
[7] Univ Cote dAzur, Inst Phys Nice, CNRS, Nice, France
来源
PHYSICAL REVIEW RESEARCH | 2024年 / 6卷 / 01期
关键词
MOBILITY EDGE; LOCALIZATION; DIFFUSION; LIGHT; ELECTRONS; ABSENCE;
D O I
10.1103/PhysRevResearch.6.L012021
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We study Anderson localization in two-dimensional, disordered, spin-orbit systems belonging to the symplectic symmetry class using momentum-space signatures such as the coherent backscattering antipeak and the coherent forward-scattering peak. Significantly, these momentum-space features are readily accessible in ultracold atom experiments through absorption imaging after time-of-flight expansion. Here, the critical exponent and mobility edge of the metal-insulator transition are successfully obtained through a finite-time analysis of the coherent backscattering width. An anomalous residual diffusion, unique to two dimensions, is identified at the transition point where the system changes from a metal to an insulator. A spin localization phenomenon is also observed in the deep localized regime.
引用
收藏
页数:6
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