论文标题
在非常规超导体异质结构中接近诱导的集体模式
Proximity-induced collective modes in an unconventional superconductor heterostructure
论文作者
论文摘要
长期以来,由于其在量子技术和设备中的潜在应用而寻求非常规的超导体。阻碍这种工作的主要挑战是与探测和表征候选材料并建立其顺序参数相关的困难。在这封信中,我们提出了一个平台,该平台使我们能够通过接近效应在薄层材料中探测探针非常规超导性。我们表明,在具有内在的D波不稳定性的样品中诱导S波间隙会导致形成准粒子对的结合状态,这表现为D-Wave通道中的集体模式。这一发现提供了一种通过系统的集体模式来替代研究基础配对相互作用的方法。在系统进一步冷却后,我们观察到这种模式会大大柔软,甚至可能凝结,这表明了时间反转对称性破坏超导性的发作。因此,我们的建议还允许创建和研究这些难以捉摸的非常规国家。
Unconventional superconductors have been long sought for their potential applications in quantum technologies and devices. A key challenge impeding this effort is the difficulty associated with probing and characterizing candidate materials and establishing their order parameter. In this Letter, we present a platform that allows us to spectroscopically probe unconventional superconductivity in thin-layer materials via the proximity effect. We show that inducing an s-wave gap in a sample with an intrinsic d-wave instability leads to the formation of bound-states of quasiparticle pairs, which manifest as a collective mode in the d-wave channel. This finding provides a way to study the underlying pairing interactions vicariously through the collective mode spectrum of the system. Upon further cooling of the system we observe that this mode softens considerably and may even condense, signaling the onset of time-reversal symmetry breaking superconductivity. Therefore, our proposal also allows for the creation and study of these elusive unconventional states.