论文标题
奇数超导性的有效准经典模型:能量对称,保留光谱重量和Meissner响应
Effective quasiclassical models for odd-frequency superconductivity: energy-symmetry, preserved spectral weight, and Meissner response
论文作者
论文摘要
奇数超导态通常出现在由常规超导体和其他材料组成的混合结构中,并具有形成时间非本地库珀对的电子。超导性的准经典理论已被广泛用于建模此类系统,在许多情况下发现与实验测量非常吻合。因此,研究有效的奇数超导性模型以预测与这种非常规配对相关的新现象。我们确定必要的标准,即在肮脏极限内必须满足奇数超导系统中的准经典绿色功能,才能在身体上保持合理,包括光谱的保存。我们表明,可以写下满足所有上述标准的有效模型,但在状态的密度和超导体的磁反应方面仍然可以预测不同的行为。例如,具有保守光谱重量的奇数异常绿色功能的有效模型可以产生费米能量处的峰值或间隙密度,并表现出常规,零或非常规的Meissner响应。这一发现表明了仔细考虑描述奇数超导性的有效模型的特性以获得物理合理的结果的重要性。
The odd-frequency superconducting state appears generally in hybrid structures consisting of conventional superconductors and other materials, and features electrons that form temporally non-local Cooper pairs. The quasiclassical theory of superconductivity has been extensively used to model such systems, finding in many cases excellent agreement with experimental measurements. Therefore, it is of interest to study effective models of odd-frequency superconductivity to predict new phenomena associated with this form of unconventional pairing. We establish necessary criteria that the quasiclassical Green functions in odd-frequency superconducting systems in the dirty limit must satisfy in order to be physically reasonable, including conservation of spectral weight. We show that it is possible to write down effective models which satisfy all the abovementioned criteria, but which still predict different behavior when it comes to the density of states and the magnetic response of the superconductor. For instance, an effective model for the odd-frequency anomalous Green function that gives a conserved spectral weight can yield either a peaked or gapped density of states at the Fermi energy, and exhibit conventional, zero, or unconventional Meissner response. This finding demonstrates the importance of carefully considering the properties of effective models describing odd-frequency superconductivity in order to obtain physically reasonable results.