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Bose polarons and rotating gases in an ultracold Bose-Fermi gas mixture of 40K and 87Rb atoms.

机译:在40K和87Rb原子的超冷Bose-Fermi气体混合物中的玻色极化子和旋转气体。

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摘要

An ultracold Bose-Fermi gas mixture of 40K and 87Rb atoms has tunable interspecies interactions and therefore provides a fantastic platform for exploring not only few-body physics such as Feshbach molecule formation and Efimov trimers, but also many-body physics including Bose polarons, quantum Hall physics and so on. In this thesis, I present experimental evidence of Bose polarons in cold atoms obtained using radio-frequency spectroscopy to measure the excitation spectrum of fermionic 40K impurities resonantly interacting with a BEC of 87Rb atoms. These Bose polarons originate from the dressing of an impurity coupled to its environment, which is an important paradigm in quantum many-body physics. I also present initial work that launches an exciting new direction for our experiment, which is exploring rotating quantum gases. Goals for this work include studying both rotating Bose and Fermi superfluids with tunable interactions as well as working toward rapidly rotating quantum gases in the quantum Hall regime. For these goals, a new all-optical trap for rotating gases was designed, implemented, and tested using a 87Rb Bose-Einstein condensate.
机译:具有40K和87Rb原子的超冷Bose-Fermi气体混合物具有可调节的物种间相互作用,因此不仅为探索诸如Feshbach分子形成和Efimov三聚体的少体物理学,而且为包括Bose极化子,量子的多体物理学提供了绝佳的平台霍尔物理等。在本文中,我提供了利用射频光谱获得的冷原子中的玻色子极化子的实验证据,该射频光谱用于测量与87Rb原子的BEC共振相互作用的铁离子40K杂质的激发光谱。这些玻色子极化子源自与环境耦合的杂质的修整,这是量子多体物理学中的重要范例。我还介绍了初步工作,为我们的实验探索了一个令人兴奋的新方向,即探索旋转的量子气体。这项工作的目标包括研究具有可调相互作用的旋转Bose和Fermi超流体,以及致力于在量子霍尔状态下快速旋转量子气体。为了实现这些目标,使用87Rb的玻色-爱因斯坦冷凝物设计,实施并测试了一种新型的用于旋转气体的全光阱。

著录项

  • 作者

    Hu, Ming-Guang.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Atomic physics.;Physics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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