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Quantum fluctuations in percolating superconductors: an evolution with effective dimensionality

机译:渗透超导体中的量子波动:具有有效维度的演变

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摘要

We investigate percolating films of superconducting nanoparticles and observe an evolution from superconducting to metallic to insulating states as the surface coverage of the nanoparticles is decreased. We demonstrate that this evolution is correlated with a reduction in the effective/dominant dimensionality of the system, from 2D to 1D to 0D, and that the physics in each regime is dominated by vortices, phase slips and tunnelling respectively. Finally we construct phase diagrams that map the various observed states as a function of surface coverage (or, equivalently, normal state resistance), temperature and measurement current.
机译:我们研究超导纳米颗粒的渗透膜,并且随着纳米颗粒的表面覆盖率降低,观察到超导到金属到绝缘状态的进化。 我们证明,这种进化与系统的有效/显性维度的减少,从2D到1D到0D的减少,并且每个方案中的物理分别由涡流,相单滑轮和隧道占主导地位。 最后,我们构造了映射各种观察状态的相图,作为表面覆盖的函数(或等效,正常状态电阻),温度和测量电流。

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