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Developing a trilayer processing technique for superconducting YBa 2Cu3O7-δ thin films by using Ge ion implantation

机译:利用Ge离子注入开发超导YBa2Cu3O7-δ薄膜三层处理技术

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摘要

For making trilayer superconducting devices based on YBa2Cu 3O7-δ (YBCO) thin film processing, we developed a new technique by employing Ge ion implantation. A YBCO thin film of 150 nm thickness having high c-axis orientation and a transition temperature, T c, of 90 K was implanted with 80 keV, 1 × 1016 Ge ions cm-2 at room temperature. By the result of TRIM calculation, Ge ions were found to penetrate into the YBCO thin film approximately 60 nm below the surface of the film, thus leaving the lower part of the film as a superconductor. Upon implantation with Ge ions, the implanted upper part of the sample lost its electrical conductivity and diamagnetism while its original crystalline structure was preserved. The implanted ions we found did not alter the overall crystal structure of the YBCO thin film; this allowed us to grow an epitaxial superconducting upper layer of YBCO on top of the implanted area, leaving no need to use any buffer layer. The superconducting properties of the upper layer were similar to those of the pure YBCO base layer with an increased room temperature resistivity and a lowered Tc (88 K). This process provides an effective method for fabrication of a trilayer HTS device structure.
机译:为了制造基于YBa2Cu3O7-δ(YBCO)薄膜工艺的三层超导器件,我们通过采用Ge离子注入开发了一种新技术。在室温下,用80 keV,1×1016 Ge离子cm-2注入具有高c轴取向和90 K的转变温度T c的150 nm厚度的YBCO薄膜。通过TRIM计算的结果,发现Ge离子渗透到膜表面下方约60nm处的YBCO薄膜中,从而留下膜的下部作为超导体。注入Ge离子后,样品的上部就失去了电导率和抗磁性,同时保留了其原始的晶体结构。我们发现注入的离子不会改变YBCO薄膜的整体晶体结构。这使我们能够在注入区域的顶部生长YBCO的外延超导上层,而无需使用任何缓冲层。上层的超导性能与纯YBCO基层的超导性能相似,具有更高的室温电阻率和更低的Tc(88 K)。该工艺提供了一种用于制造三层HTS器件结构的有效方法。

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