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Uncovering a new quasi-2D CuO2 plane between the YBa2Cu3O7 and CeO2 buffer layer of coated conductors

机译:在涂覆导体的YBa2Cu3O7和CeO2缓冲层之间发现新的准二维CuO2平面

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We report a discovery of the quasi-two-dimensional (quasi-2D) CuO2 plane between the superconductor YBa2Cu3O7 (YBCO) and CeO2 buffer layer (mostly used in the fabrication) of coated conductors through the atomistic computer simulations with the molecular dynamics (MD) and first-principle calculations. For an YBCO coated conductor with multilayer structures, the buffer layers deposited onto a substrate are mainly considered to transfer a strong biaxial texture from the substrate to the YBCO layer. To deeply understand the tuning mechanism of the texture transfer, exploring the complete atomic-level picture of the structure between the YBa2Cu3O7/CeO2 interfaces is firstly required. However, the related observation data have not been available due to some big challenges of experimental techniques. With the MD simulations, having tested the accuracy of the potential functions for the YBa2Cu3O7/CeO2 interface, we constructed a total of 54 possible atom stacking models of the interface and identified its most appropriate and stable structure according to the criterion of the interface adhesion energy and the coherent characterization. To further verify the stability of the identified structure, we performed the first-principle calculations to obtain the adhesion energy and developed the general knowledge of the interface structure. Finally, a coherent interface formed with a new built quasi-2D CuO2 plane that is structurally similar to the CuO2 plane inside bulk YBCO was determined. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们报告了通过分子动力学(MD)的原子计算机模拟,发现了超导体YBa2Cu3O7(YBCO)和CeO2缓冲层(主要用于制造)之间的准二维(准2D)CuO2平面的发现)和第一性原理计算。对于具有多层结构的YBCO涂层导体,主要考虑到沉积在基板上的缓冲层将牢固的双轴织构从基板转移到YBCO层。为了深入了解纹理转移的调节机制,首先需要探索YBa2Cu3O7 / CeO2界面之间结构的完整原子级图。但是,由于实验技术的一些重大挑战,相关的观测数据尚未获得。通过MD模拟,测试了YBa2Cu3O7 / CeO2界面的潜在函数的准确性,我们构建了54个可能的界面原子堆积模型,并根据界面粘附能的标准确定了其最合适和最稳定的结构和连贯的特征为了进一步验证所识别结构的稳定性,我们进行了第一性原理计算以获得粘附能并开发了界面结构的常识。最后,确定了与新构建的准2D CuO2平面形成的相干界面,该平面与本体YBCO内部的CuO2平面在结构上相似。 (C)2017 Elsevier B.V.保留所有权利。

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