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Applications of high-Tc superconductors in optoelectronics,

机译:高Tc超导体在光电中的应用

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Abstract: The discovery of high-temperature superconductors (HTS) has opened new opportunities for applications of superconductors in optoelectronics. The HTS perovskites represent a new class of solid-state materials, exhibiting many very interesting and potentially useful electronic, optical, and electro-optical properties. They also operate in the 30-80 K temperature range, where refrigeration is cheap and the parameters of semiconducting devices are optimal. A review of the substrate materials and deposition techniques suitable for fabrication of high- quality epitaxial HTS films for electronic and optoelectronic applications is given. Laser processing techniques of HTS films are presented, with a special emphasis put on the laser writing method, which enables definition of superconducting and nonsuperconducting regions in the same, epitaxial HTS film. Two possible approaches for the development of a complete optoelectronic system with the elements based on the HTS films and operational at liquid- nitrogen temperatures are presented. The first approach consists of manufacturing the devices made of conventional electro-optic materials and containing HTS transmission lines and electrodes. Design and properties of ultrafast HTS interconnects are discussed, and a new concept of the Mach-Zehnder-type YBa$-2$/Cu$-3$/O$-7$MIN@y$/-on-LiNbO$-3$/ optical modulator is introduced. The second, more futuristic approach, is to exploit contrasting properties of the oxygen-poor and oxygen-rich HTS phases to fabricate novel, monolithic devices. Recent experiments are discussed, which reveal intriguing optical properties of HTS films, and are most relevant for the development of all-HTS optoelectronic devices. Several practical devices, such as high-frequency modulators, ultrafast-pulse generators, and sensitive photodetectors will be presented.!60
机译:摘要:高温超导体(HTS)的发现为光电中超导体的应用打开了新的机遇。 HTS钙钛矿代表了新型的固态材料,展现出许多非常有趣且潜在有用的电子,光学和电光特性。它们还可以在30-80 K的温度范围内运行,那里的制冷价格便宜,并且半导体器件的参数是最佳的。本文综述了适用于电子和光电应用的高质量外延HTS薄膜制造的衬底材料和沉积技术。本文介绍了HTS膜的激光加工技术,特别强调了激光写入方法,该方法可以在同一外延HTS膜中定义超导和非超导区域。提出了两种开发基于HTS膜的元件并在液氮温度下运行的完整光电系统的可能方法。第一种方法包括制造由常规电光材料制成并包含HTS传输线和电极的设备。讨论了超快速HTS互连的设计和性能,并提出了Mach-Zehnder型YBa $ -2 $ / Cu $ -3 $ / O $ -7 $ MIN @ y $ /-LiNbO $ -3的新概念介绍了光调制器。第二种更具未来主义的方法是利用贫氧和富氧HTS相的对比特性来制造新颖的整体式设备。讨论了最近的实验,这些实验揭示了HTS薄膜有趣的光学特性,并且与全HTS光电器件的开发最相关。将介绍几种实用的设备,例如高频调制器,超快脉冲发生器和灵敏的光电探测器。60

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