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Quasiparticle spin resonance and coherence in superconducting aluminium

机译:超导铝中的准粒子自旋共​​振和相干性。

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摘要

Conventional superconductors were long thought to be spin inert; however, there is now increasing interest in both (the manipulation of) the internal spin structure of the ground-state condensate, as well as recently observed long-lived, spin-polarized excitations (quasiparticles). We demonstrate spin resonance in the quasiparticle population of a mesoscopic superconductor (aluminium) using novel on-chip microwave detection techniques. The spin decoherence time obtained (∼100 ps), and its dependence on the sample thickness are consistent with Elliott–Yafet spin–orbit scattering as the main decoherence mechanism. The striking divergence between the spin coherence time and the previously measured spin imbalance relaxation time (∼10 ns) suggests that the latter is limited instead by inelastic processes. This work stakes out new ground for the nascent field of spin-based electronics with superconductors or superconducting spintronics.
机译:长期以来,传统的超导体被认为是自旋惰性的。然而,现在人们对基态冷凝物的内部自旋结构(的操纵)以及最近观察到的长寿命,自旋极化激发(准粒子)的兴趣都在增加。我们使用新型的片上微波检测技术在介观超导体(铝)的准粒子种群中证明了自旋共振。获得的自旋退相干时间(约100 ps)及其对样品厚度的依赖性与Elliott-Yafet自旋轨道散射作为主要的退相干机理相一致。自旋相干时间与先前测得的自旋不平衡松弛时间(〜10 ns)之间的显着差异表明,后者受非弹性过程的限制。这项工作为具有超导体或超导自旋电子学的自旋电子学的新兴领域开辟了新领域。

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