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Pair-breaking model for disorder in two-dimensional superconductors

A. F. HebardAT&T Bell Laboratories, Murray Hill, New Jersey 07974M. A. PaalanenAT&T Bell Laboratories, Murray Hill, New Jersey 07974
1984en
ABI

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Measurements of resistive transitions, critical fields, and magnetoconductance as a function of increasing normal-state sheet resistance ${R}_{N}$ reveal the systematics of a pronounced change from superconducting to insulating behavior in thin $\frac{\mathrm{In}}{\mathrm{In}{\mathrm{O}}_{x}}$ composite films. With increasing ${R}_{N}$, a rapid suppression of the transition temperature together with a decreasing critical-field slope parameter are observed. These results are modeled using a pair-breaking formalism in which the pair-breaking rate is found to be proportional to ${R}_{N}$ and independent of temperature.

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