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Survival of superconducting correlations across the 2D superconductor-insulator transition: A finite frequency study

R. W. Crane, N. P. Armitage, A. Johansson, G. Sambandamurthy, D. Shahar, G. Gruner

cond-mat.supr-conarXiv:cond-mat/0604107

Abstract

The complex ac conductivity of thin highly disordered InOx films was studied as a function of magnetic field through the nominal two-dimensional superconductor-insulator transition. We have resolved a significant finite-frequency superfluid stiffness well into the insulating regime, giving direct evidence for quantum superconducting fluctuations around an insulating ground state and a state of matter with localized Cooper pairs. A phase diagram is established that includes the superconducting state, a transition to a "Bose" insulator, and an eventual crossover to a "Fermi" insulating state at high fields. We speculate on the consequences of these observations, their impact on our understanding of the insulating state, and its relevance as a prototype for other insulating states of matter that derive from superconductors.

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