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arxiv: 1210.7462 · v2 · pith:2ZJVV5XLnew · submitted 2012-10-28 · ❄️ cond-mat.supr-con · cond-mat.dis-nn

Frequency dependent superfluid stiffness in the pseudogap regime in strongly disordered NbN thin films

classification ❄️ cond-mat.supr-con cond-mat.dis-nn
keywords stronglydisorderedfilmsfluctuationsfrequencyregimeabovedisorder
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We measure the frequency dependence of the complex ac conductivity of NbN films with different levels of disorder in frequency range 0.4-20 GHz. Films with low disorder exhibit a narrow dynamic fluctuation regime above T_c as expected for a conventional superconductor. However, for strongly disordered samples, the fluctuation regime extends well above T_c, with a strongly frequency-dependent superfluid stiffness which disappears only at a temperature T* close to the pseudogap temperature obtained from scanning tunneling measurements. Such a finite-frequency response is associated to a marked slowing down of the superconducting fluctuations already below T*. The corresponding large length-scale fluctuations suggest a scenario of thermal phase fluctuations between superconducting domains in a strongly disordered s-wave superconductor.

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