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Carrier density and disorder tuned superconductor-metal transition in a two-dimensional electron system

机译:二维电子系统中的载流子密度和无序调谐超导体-金属跃迁

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摘要

Quantum ground states that arise at atomically controlled oxide interfaces provide an opportunity to address key questions in condensed matter physics, including the nature of two-dimensional metallic behaviour often observed adjacent to superconductivity. At the superconducting LaAlO3/SrTiO3 interface, a metallic ground state emerges upon the collapse of superconductivity with field-effect gating and is accompanied with a pseudogap. Here we utilize independent control of carrier density and disorder of the interfacial superconductor using dual electrostatic gates, which enables the comprehensive examination of the electronic phase diagram approaching zero temperature. We find that the pseudogap corresponds to precursor pairing, and the onset of long-range phase coherence forms a two-dimensional superconducting dome as a function of the dual-gate voltages. The gate-tuned superconductor–metal transitions are driven by macroscopic phase fluctuations of Josephson coupled superconducting puddles.
机译:在原子控制的氧化物界面处产生的量子基态为解决凝聚态物理中的关键问题提供了机会,这些问题包括通常在超导附近观察到的二维金属行为的性质。在超导LaAlO3 / SrTiO3界面上,随着场效应门控的出现,金属基态在超导电性崩溃后出现,并伴有伪间隙。在这里,我们利用双静电门对载流子密度和界面超导体的无序性进行独立控制,从而能够全面检查接近零温度的电子相图。我们发现伪间隙对应于前驱体配对,并且长程相干的开始形成了二维超导圆顶,该圆顶是双栅电压的函数。栅极调谐的超导体-金属跃迁是由约瑟夫森耦合的超导水坑的宏观相位波动驱动的。

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