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Stacks of YBCO Films Using Multiple IBAD Templates

机译:使用多个IBAD模板的YBCO影片叠

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In this paper we present initial results on growing YBCO/IBAD-MgO/YBCO stacks. Amorphous ${rm Y}_{2}{rm O}_{3}$ layers, deposited by sol-gel, are used to level the YBCO surface. Since the YBCO films prepared by pulsed laser deposition are relatively rough, preparing a smooth surface on top of YBCO for IBAD texturing is a major challenge for this structure. For all substrates studied—polished and unpolished metal tape and YBCO—we were able to reduce the roughness of the substrate using the sol-gel layer, with multiple coatings being more effective. First it is demonstrated that high quality YBCO films can be deposited on sol-gel-${rm Y}_{2}{rm O}_{3}$/IBAD-MgO templates. Second it is shown that the sol-gel and the IBAD process do not affect the superconducting properties of the underlying YBCO film. Finally, a superconducting YBCO bilayer stack is demonstrated. Improvements in the properties of the top YBCO layer is expected when the surface roughness is reduced further for deposition of subsequent IBAD-textured layers. This new technology should enable novel designs of coated conductors for reduced AC losses and increased $J_{bf e}$ .
机译:在本文中,我们介绍了有关生长YBCO / IBAD-MgO / YBCO烟囱的初步结果。通过溶胶凝胶沉积的非晶$ {rm Y} _ {2} {rm O} _ {3} $层用于平整YBCO表面。由于通过脉冲激光沉积制备的YBCO膜相对较粗糙,因此在YBCO顶部准备用于IBAD纹理化的光滑表面是该结构的主要挑战。对于所研究的所有基材(抛光和未抛光的金属带和YBCO),我们能够使用溶胶-凝胶层降低基材的粗糙度,并且多层涂料更有效。首先证明了高质量的YBCO薄膜可以沉积在sol-gel-$ {rm Y} _ {2} {rm O} _ {3} $ / IBAD-MgO模板上。其次,表明溶胶-凝胶法和IBAD法不影响下面的YBCO膜的超导性能。最后,演示了超导YBCO双层堆栈。当进一步降低表面粗糙度以沉积随后的IBAD织构层时,可以预期改善YBCO顶层的性能。这项新技术应能使涂覆导体的设计新颖,以减少交流电损耗并增加$ J_ {bf e} $。

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