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Transport phenomena in correlated quantum liquids: Ultracold Fermi gases and F/N junctions.

机译:相关量子液体中的传输现象:超冷费米气体和F / N结。

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摘要

Landau Fermi-liquid theory was first introduced by L. D. Landau in the effort of understanding the normal state of Fermi systems, where the application of the concept of elementary excitations to the Fermi systems has proved very fruitful in clarifying the physics of strongly correlated quantum systems at low temperatures. In this thesis, I use Landau Fermi-liquid theory to study the transport phenomena of two different correlated quantum liquids: the strongly interacting ultracold Fermi gases and the ferromagnet/normal-metal (F/N) junctions. The detailed work is presented in chapter II and chapter III of this thesis, respectively. Chapter I holds the introductory part and the background knowledge of this thesis.;In chapter II, I study the transport properties of a Fermi gas with strong attractive interactions close to the unitary limit. In particular, I compute the transport lifetimes of the Fermi gas due to superfluid fluctuations above the BCS transition temperature Tc. To calculate the transport lifetimes I need the scattering amplitudes. The scattering amplitudes are dominated by the superfluid fluctuations at temperatures just above Tc. The normal scattering amplitudes are calculated from the Landau parameters. These Landau parameters are obtained from the local version of the induced interaction model for computing Landau parameters. I also calculate the leading order finite temperature corrections to the various transport lifetimes. A calculation of the spin diffusion coefficient is presented in comparison to the experimental findings. Upon choosing a proper value of F0a, I am able to present a good match between the theoretical result and the experimental measurement, which indicates the presence of the superfluid fluctuations near Tc. Calculations of the viscosity, the viscosity/entropy ratio and the thermal conductivity are also shown in support of the appearance of the superfluid fluctuations.;In chapter III, I study the spin transport in the low temperature regime (often referred to as the precession-dominated regime) between a ferromagnetic Fermi liquid (FFL) and a normal metal metallic Fermi liquid (NFL), also known as the F/N junction, which is considered as one of the most basic spintronic devices. In particular, I explore the propagation of spin waves and transport of magnetization through the interface of the F/N junction where nonequilibrium spin polarization is created on the normal metal side of the junction by electrical spin injection. I calculate the probable spin wave modes in the precession-dominated regime on both sides of the junction especially on the NFL side where the system is out of equilibrium. Proper boundary conditions at the interface are introduced to establish the transport of the spin properties through the F/N junction. A possible transmission conduction electron spin resonance (CESR) experiment is suggested on the F/N junction to see if the predicted spin wave modes could indeed propagate through the junction. Potential applications based on this novel spin transport feature of the F/N junction are proposed in the end.
机译:LD Landau最初是为了理解费米系统的正常状态而首先引入了Landau费米液体理论,在该方法中,将基本激发的概念应用于费米系统已被证明在阐明强相关量子系统的物理学方面非常有成果。低温。在本文中,我使用Landau费米液体理论研究了两种不同的相关量子液体的传输现象:强相互作用的超冷费米气体和铁磁体/法向金属(F / N)结。具体工作分别在本论文的第二章和第三章中介绍。第一章为绪论,第二章为研究费米气体的输运性质。特别是,我计算了由于BCS转变温度Tc以上的超流体波动而引起的费米气体的传输寿命。为了计算运输寿命,我需要散射振幅。散射幅度受温度刚好高于Tc时的超流体波动支配。正常散射幅度是根据Landau参数计算得出的。这些Landau参数是从诱导交互模型的本地版本获得的,用于计算Landau参数。我还计算了各种运输寿命的前导有限温度校正。与实验结果相比,提出了自旋扩散系数的计算。选择合适的F0a值后,我就能在理论结果和实验测量值之间找到很好的匹配,这表明在Tc附近存在超流体涨落。还显示了粘度,粘度/熵比和导热系数的计算,以支持超流体波动的出现。在第三章中,我研究了低温状态下的自旋输运(通常称为进动-铁磁费米液(FFL)和普通金属金属费米液(NFL)之间的混合(称为F / N结),它被认为是最基本的自旋电子器件之一。特别是,我探索了自旋波的传播和通过F / N结的界面的磁化传输,其中通过电自旋注入在结的法向金属侧上产生了非平衡自旋极化。我在交点的两侧,特别是在系统失衡的NFL侧,以进动为主的状态计算了可能的自旋波模式。在界面处引入适当的边界条件以建立自旋特性通过F / N结的传输。建议在F / N结上进行可能的传输传导电子自旋共振(CESR)实验,以查看预测的自旋波模式是否确实可以通过该结传播。最后提出了基于F / N结的这种新型自旋输运特征的潜在应用。

著录项

  • 作者

    Li, Hua.;

  • 作者单位

    Boston College.;

  • 授予单位 Boston College.;
  • 学科 Condensed matter physics.;Low temperature physics.;Theoretical physics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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