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Preparation of metal mixed plastic superconductors: Electrical properties of tin-antimony thin films on plastic substrates

机译:金属混合塑料超导体的制备:塑料衬底上的锡锑薄膜的电性能

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摘要

Metal mixed polymers are a cheap and effective way to produce flexible metals and superconductors. As part of an on-going effort to learn how to tune the properties of these systems with ion implantation, we present a study of the electrical properties of these systems prior to metal mixing. We show that the electrical properties of tin-antimony thin films are remarkably robust to variations in the substrate morphology. We demonstrate that the optical absorbance of the films at a fixed wavelength provides a reliable and reproducible characterization of the relative film thickness. We find that as the film thickness is reduced, the superconducting transition in the unimplanted thin films is broadened, but the onset of the transition remains at ~3.7 K, the transition temperature of bulk Sn. This is in marked contrast to the behavior of metal mixed films, which suggests that the metal mixing process has a significant effect on the physics of the superconducting state beyond that achieved by reducing the film thickness alone.
机译:金属混合聚合物是生产柔性金属和超导体的廉价有效方法。为了不断学习如何通过离子注入来调节这些系统的性能,我们在进行金属混合之前对这些系统的电性能进行了研究。我们表明,锡-锑薄膜的电学性能对基底形态的变化具有显着的鲁棒性。我们证明了在固定波长下薄膜的吸光度提供了相对薄膜厚度的可靠和可再现的表征。我们发现,随着膜厚度的减小,未注入薄膜中的超导转变变宽,但转变的开始保持在〜3.7 K,即本体Sn的转变温度。这与金属混合膜的行为形成鲜明对比,这表明金属混合过程对超导状态的物理影响远远超过仅通过减小膜厚度即可达到的效果。

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