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Transport and disorder-induced localization of ultracold Fermi gases.

机译:超冷费米气体的运输和无序诱导的定位。

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摘要

We experimentally study localization and dynamics of ultracold fermions in speckle and optical lattice potentials to explore Anderson localization, many-body localization, and relaxation dynamics in strongly correlated systems. Anderson localization is probed by releasing non-interacting, spin-polarized gases into three dimensional, anisotropic disordered potentials produced from optical speckle. A fraction of the atoms are localized by the disorder, and a mobility edge is found separating localized from extended states. The length scale of the speckle is varied, and the localized state is found to scale linearly with the geometric mean of the speckle autocorrelation length. We realize the Fermi Hubbard model by loading atoms in a cubic optical lattice. Non-equilibrium momentum distributions are created via Raman transitions, and the excitation relaxation rate is measured in the lattice. Transport experiments were performed in a disordered optical lattice to explore the disordered Hubbard model. These experiments reveal localization in the presence of strong interactions and an interaction driven metal-to-insulator transition. The localized state is found to be insensitive to a doubling in the temperature of the gas and is consistent with predictions of many-body localization.
机译:我们通过实验研究散斑和光学晶格势中超冷费米子的定位和动力学,以探索安德森定位,多体定位和强相关系统中的弛豫动力学。通过将非相互作用的自旋极化气体释放到由光学散斑产生的三维各向异性无序电势中来探究安德森定位。一部分原子被无序定位,并且发现迁移率边缘将定位状态与扩展状态分开。斑点的长度尺度是变化的,并且发现局部状态与斑点自相关长度的几何平均值成线性比例。我们通过将原子加载到立方光学晶格中来实现费米·哈伯德模型。通过拉曼跃迁创建非平衡动量分布,并在晶格中测量激发弛豫率。在无序的光学晶格中进行运输实验,以探索无序的Hubbard模型。这些实验揭示了在强相互作用和相互作用驱动的金属向绝缘体过渡的存在下的定位。发现局部状态对气体温度的倍增不敏感,并且与多体局部化的预测一致。

著录项

  • 作者

    McGehee, William Russell.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Atomic physics.;Condensed matter physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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