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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Fabrication and characterization of Y-Ba-Cu-O and Nd-Ba-Cu-Oramp-edge junctions with an interface-modified barrier
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Fabrication and characterization of Y-Ba-Cu-O and Nd-Ba-Cu-Oramp-edge junctions with an interface-modified barrier

机译:具有界面修饰的势垒的Y-Ba-Cu-O和Nd-Ba-Cu-Oramp边缘结的制备与表征

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The fabrication process for YBa2Cu3O7-δ (YBCO) ramp-edge junctions with an interface-modified barrier has been studied. The conditions of electron cyclotron resonance (ECR) ion etching and following annealing treatment were optimized by evaluating the mean roughness of the ramp surface using atomic force microscope (AFM) observation. We could obtain resistively-shunted junction (RSJ) type current-voltage characteristics for the junctions with the counterelectrode YBCO layer deposited at temperatures lower than 720°C, while a deposition temperature higher than 755°C resulted in a high-Jc superconducting contact. The junctions exhibited an IcRn product of 1.0-1.9 mV and magnetic field modulation of Ic more than 90% at 4.2 K. By applying the optimum etching condition to a NdBa2Cu3O7-δ (NBCO) base electrode and employing a slightly higher annealing and deposition temperature, YBCO/NBCO ramp-edge Josephson junctions with a similar I cRn product were successfully obtained
机译:研究了具有界面改性势垒的YBa2Cu3O7-δ(YBCO)斜边结的制造工艺。通过使用原子力显微镜(AFM)观察评估斜面的平均粗糙度,优化了电子回旋共振(ECR)离子刻蚀条件和后续退火处理。对于在低于720°C的温度下沉积反电极YBCO层的结,我们可以获得电阻分流结(RSJ)型电流-电压特性,而高于755°C的沉积温度会导致高Jc超导接触。结表现出1.0-1.9 mV的IcRn积,在4.2 K时Ic的磁场调制超过90%。通过对NdBa2Cu3O7-δ(NBCO)基电极施加最佳蚀刻条件并采用稍高的退火和沉积温度,成功获得了具有类似I cRn积的YBCO / NBCO斜边约瑟夫森结

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