Self-Consistent Study of the Superconducting Gap in the Strontium-doped Lanthanum Cuprate

Pedro L. Contreras E., Dianela Osorio, A. Devi
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引用次数: 1

Abstract

This work is aimed at numerically investigating the behavior of the Fermi energy in Strontium-doped Lanthanum Cuprate, using a numerical zero temperature elastic scattering cross-section procedure in the unitary collision regime. The main task is to vary the zero temperature superconducting energy gap from its zero value in the normal state, to the highest value of 60 meV. We find that there are two different reduced phase space regimes for the first harmonic line node's order parameter. The first scenario considers that when the Fermi energy and the nearest hopping terms have the same order of magnitude, the physics can be described by a picture given by nonequilibrium statistical mechanics. A second scenario indicates, that when the Fermi energy parameter and the hopping term have different order of magnitude; the physical picture tends to be related to the nonrelativistic quantum mechanical degrees of freedom coming from quasi-stationary quantum energy levels, with a damping term seen in the probability density distribution function, that is described in the configuration space. Henceforth, it is concluded that the use of the zero temperature elastic scattering cross-section links the phase and configuration spaces through the inverse scattering lifetime, and helps to clarify the role of the degrees of freedom in Strontium-doped Lanthanum Cuprate. Finally, we think that the self-consistent numerical procedure with the reduced phase space, induces nonlocality in the inverse scattering lifetime.
掺锶铜酸镧超导隙的自一致性研究
本研究的目的是利用零温度弹性散射截面程序,在单一碰撞条件下,数值研究掺锶铜酸镧中费米能量的行为。主要任务是将零温度超导能隙从正常状态下的零值变化到60 meV的最大值。我们发现,第一次谐波线节点的阶参量有两种不同的化简相空间形式。第一个场景认为,当费米能量和最近的跳跃项具有相同的数量级时,物理可以用非平衡统计力学给出的图像来描述。第二种情况表明,当费米能量参数和跳频项具有不同的数量级时;物理图像倾向于与来自准稳态量子能级的非相对论性量子力学自由度有关,具有在组态空间中描述的概率密度分布函数中看到的阻尼项。由此得出结论,零温度弹性散射截面通过逆散射寿命将相空间和组态空间联系起来,并有助于阐明自由度在掺锶铜酸镧中的作用。最后,我们认为在相空间化简的情况下,自洽数值过程导致了逆散射寿命的非局域性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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