Phase fluctuations in finite thickness disordered superconducting thin films
Abstract
Phase fluctuations in finite thickness layered superconducting films are studied theoretically. The model consists of a set of layers, coupled to each other via a gradient-like term in the phase-only action. It is shown that the effective phase stiffness of the whole system is proportional to its thickness (i.e. the number of individual layers). This result leads to a superconductor-insulator transition and an inverse dependence of Tc on thickness,Tc d-1, both in accord with the experimental findings. The relevance to disordered thin films is discussed.
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