论文标题
二维颗粒状INOX复合材料中强大的异常金属状态和自偶性的遗迹
Robust anomalous metallic states and vestiges of self duality in two-dimensional granular In-InOx composites
论文作者
论文摘要
许多研究磁场调谐超导体 - 绝缘体转变(H-SIT)的实验通常表现出低温抗性饱和度,这被解释为从“失败的超导体”中出现的异常金属相,因此提出了挑战的常规理论。在这里,我们研究了在可结合的二氧化物层上生长的依赖岛的随机颗粒阵列。通过调谐晶粒耦合,我们揭示了在仔细的电磁滤波条件下并且在广泛的线性响应范围内观察到电阻饱和的广泛磁场。暴露于外部宽带噪声或微波辐射可以增强超导性的趋势,在低场处,全局超导阶段恢复。增加磁场揭示了一种“避免的H-SIT”,该磁场表现出粒度引起的对数差异的差异,在该过渡的上方/下方/下方/下方的电导率/电导率上表明,表明在真实的H-SIT中观察到的原始出现双重性的可能遗迹。我们得出的结论是,异常的金属相与固有的不均匀性密切相关,这表现出在可达到的强度颗粒状二维系统时表现出良好的行为。
Many experiments investigating magnetic field tuned superconductor-insulator transition (H-SIT), often exhibit low-temperature resistance saturation, which is interpreted as an anomalous metallic phase emerging from a "failed superconductor," thus challenging conventional theory. Here we study a random granular array of indium islands grown on a gateable layer of indium-oxide. By tuning the intergrain couplings, we reveal a wide range of magnetic fields where resistance saturation is observed, under conditions of careful electromagnetic filtering and within a wide range of linear response. Exposure to external broadband noise or microwave radiation is shown to strengthen the tendency of superconductivity, where at low field a global superconducting phase is restored. Increasing magnetic field unveils an "avoided H-SIT," that exhibits granularity-induced logarithmic divergence of the resistance/conductance above/below that transition, pointing to possible vestiges of the original emergent duality observed in a true H-SIT. We conclude that anomalous metallic phase is intimately associated with inherent inhomogeneities, exhibiting robust behavior at attainable temperatures for strongly granular two-dimensional systems.