标题: Ginzburg-Landau 理論对于 Type-II 超导体的传输性质与涨落之研究
Ginzburg-Landau theory of transport properties and fluctuations in Type-II superconductors
作者: 卜德廷
Bui, Duc Tinh
儒森斯坦
Rosenstein, Baruch
电子物理系所
关键字: Ginzburg-Landau 理論;超导体;Ginzburg-Landau theory;superconductors
公开日期: 2010
摘要: 高温超导的发现有趣地修改了超导体热扰动性质,尤其是热力学性质和传输性质(尤其是热流传输)。我们在这工作理考虑在磁场下的超导体的扰动效应。在高温扰动的影响下,特别是对一些非传统超导体中很强的各向非均匀性的磁特性,系统的热力学性质和传输特性会影响涡流的运动。

高温超导的 Ginzburg-Landau (GL)现象描述显着成功地描述各种热力学和传输特性。在平均场近似下,扰动可以忽略的情况下它变得相当容易。然而当扰动不可被忽略时,即使是等效描述也会变的相当复杂。当增加需要的假设时,有些进展已经被达成。额外的假设通常用于解析的计算,只有最低的 Landau 能阶显着的贡献到我们关注的物理量上。对最近实验研究的大范畴外來的參數(磁场,温度),这种近似是无效的,因此必须推广理論到包含所有的 Landau 能阶。

过去只有电性传输的理論被发展,然而最近实验已经能够观察到磁热效应和热流传输现象,像是 Nernst 和热电功率,我们需要延伸扰动理論去包含这些现象。当只考虑高斯扰动时,热电阻率和电阻率在平均场的转换温度下是被预测会发散,这个理論与实验结果矛盾。其中一个重要的结論是要符合实验结果必须要考虑扰动间的交互作用。之前的工作是 S. Ullah 和 A. T. Dorsey 在 GL 方程式中,在最低的 Landau 能阶中应用 Hartree-Fock 近似去处理四次方项计算热流传输问题。

在这个論文中,我的工作使用更有系统的高斯近似法去推广包含所有 Landau 能阶,并且计算有趣的物理量,像是横向热电阻率和Nernst讯号去描述Nernst效应,也算了在线性响应下的第二類超导体的涡流范畴中之交流电阻率。我们使用包含杂讯的时变 GL(TDGL)方程式。我们的理論數值结果可以吻合數个高温超导中的实验數据。

我也使用线性响应研究在外加磁场下层狀第二類超导体中的传输特性。使用TDGL 方程式以及热杂讯可以得到电阻率和霍尔电阻率。我们的理論结果定量上吻合在强电场下高温导体的实验數据。
The discovery of high-temperature superconductors (HTSC) has revived interest in thermal fuctuation effects in superconductors, both in thermodynamic properties and in
transport properties, with emphasis on the heat transport. In this work we shall be concerned with the effect of fuctuations on the transport properties of a superconductor in a magnetic field. Under the influence of fuctuations at high temperature, the motions of vortices are responsible for the thermodynamic properties and transport properties of
systems especially for those unconventional superconductors due to it's strong anisotropic magnetic properties.
The Ginzburg-Landau (GL) phenomenological description of high superconductors has been remarkably successful in describing various thermodynamic and transport properties.
In the mean field approximation, when the fuctuations are neglected, it is relatively simple. However when fuctuations are not negligible, even this effective description becomes very complicated. Some progress can be achieved when certain additional assumptions are added. An additional assumption, often made in analytical calculations, is that only the lowest Landau level significantly contributes to physical quantities of interest. However, in a large domain of external parameters (magnetic field, temperature) currently under
experimental investigation, this approximation is not valid and now there is a need to generalize the theory to include all Landau levels.
In the past only electric transport has been thoroughly developed theoretically. However recent experimental advance in observing various magnetocaloric coefficient and heat transport phenomena like the Nernst and thermoelectric power necessitate extension of the fuctuations theory to include these phenomena. When only the Gaussian fuctuations are considered, then the thermoelectric conductivity and the electrical conductivity were predicted to diverge at the mean-field transition temperature, in conflict with the experimental results. One of important conclusions is that interactions between the fluctuations must be considered in order to obtain even qualitative agreement with the experimental results. An early work on this subject was application of the Hartree-Fock approximation to treat the quartic term within the lowest Landau level approximation in the GL Hamiltonian for heat transport current by S. Ullah and A. T. Dorsey.
In this thesis I have extended the work to include all Landau level, use more systematic Gaussian approximation and calculate physical quantities of current interest like the transverse thermoelectric conductivity and the Nernst signal, describing the Nernst effect, as well as ac conductivity in linear response in Type-II superconductor in the vortex-liquid regime. The time-dependent Ginzburg-Landau (TDGL) equation with thermal noise is used. Our results show a good agreement with several experiment and numerical simulation on HTSC.
I also studied the transport properties in a layered Type-II superconductor under magnetic field beyond the linear response. By using TDGL equation with thermal noise is
to obtain electrical conductivity and Hall conductivity. Our results are in good qualitative and even qualitative agreement with experimental data on HTSC in strong electric fields.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079521818
http://hdl.handle.net/11536/41195
显示于类别:Thesis


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