论文标题
从隧道实验中提取间隙功能的高级方法的高级方法
Advanced approach of superconducting gap function extraction from tunneling experiments
论文作者
论文摘要
引入和检查了高级理论框架。它的主要思想是在常规的,几乎局部的超导体中提取超导配对差距函数$δ(ω)$的性能。为了测试该方法,我们提出了一个实验相关的基准模型,该模型具有定义的正常和超导扇区。开发的反向工程框架由两个逻辑步骤组成。首先,将状态的超导密度拆除成来自正常状态的超导配对和效果产生的效果。其次,提取和重建$δ(ω)$的摘录和重建属性,并将其与定义基准模型的超导扇区进行比较。采用这种方法,我们可以:(i)模拟从实际的实验性低温隧道数据中提取并评论其所需属性,并且(ii)在改善该方法的各个步骤期间,在重建的库珀对侵袭性属性上方保持绝对控制。
An advanced theoretical framework is introduced and examined. Its main idea is to extract properties of the superconducting pairing gap function $Δ(ω)$ in the conventional, nearly localized superconductors. To test the approach, we present an experimentally relevant benchmark model with defined normal and superconducting sectors. The developed reverse engineering framework consists of two logic steps. First, dismantle the superconducting density of states into the effects coming from the superconducting pairing and effects inherited from the normal state. Second, extract and reconstruct properties of $Δ(ω)$ and compare it to the superconducting sector of the defined benchmark model. Applying this approach, we can: (i) simulate extraction from the actual experimental low-temperature tunneling data and comment on their required properties, and (ii) maintain absolute control above the reconstructed Cooper-pair-influencing properties during ameliorating the individual steps of the method.