Singh G, Jouan A, Benfatto L, Couëdo F, Kumar P, Dogra A, Budhani R C, Caprara S, Grilli M, Lesne E, Barthélémy A, Bibes M, Feuillet-Palma C, Lesueur J, Bergeal N
Laboratoire de Physique et d'Etude des Matériaux, ESPCI Paris, PSL Research University, CNRS, 10 Rue Vauquelin, 75005, Paris, France.
Université Pierre and Marie Curie, Sorbonne-Universités, 75005, Paris, France.
Nat Commun. 2018 Jan 29;9(1):407. doi: 10.1038/s41467-018-02907-8.
In LaAlO/SrTiO heterostructures, a gate tunable superconducting electron gas is confined in a quantum well at the interface between two insulating oxides. Remarkably, the gas coexists with both magnetism and strong Rashba spin-orbit coupling. However, both the origin of superconductivity and the nature of the transition to the normal state over the whole doping range remain elusive. Here we use resonant microwave transport to extract the superfluid stiffness and the superconducting gap energy of the LaAlO/SrTiO interface as a function of carrier density. We show that the superconducting phase diagram of this system is controlled by the competition between electron pairing and phase coherence. The analysis of the superfluid density reveals that only a very small fraction of the electrons condenses into the superconducting state. We propose that this corresponds to the weak filling of high-energy d/d bands in the quantum well, more apt to host superconductivity.
在LaAlO₃/SrTiO₃异质结构中,一种栅极可调谐的超导电子气被限制在两种绝缘氧化物界面处的量子阱中。值得注意的是,这种电子气与磁性和强Rashba自旋轨道耦合共存。然而,超导的起源以及在整个掺杂范围内向正常态转变的性质仍然不清楚。在这里,我们利用共振微波输运来提取LaAlO₃/SrTiO₃界面的超流刚度和超导能隙能量作为载流子密度的函数。我们表明,该系统的超导相图由电子配对和相位相干之间的竞争控制。对超流密度的分析表明,只有极小一部分电子凝聚到超导态。我们提出,这对应于量子阱中高能d/d带的弱填充,更易于承载超导性。