\begin{document}$(T_{\rm C}-T)^2$\end{document} dependence. At 77 K, the JC of the junction reaches 1.4 × 105 A/cm2, significantly higher than the range of 103–104 A/cm2 as presented by other investigators for YBCO step-edge junctions on MgO substrate with comparable θ of 35°–45°. This indicates a rather strong Josephson coupling of the junction, and by invoking the results of YBCO bicrystal junctions showing similar values of JC, it is tentatively proposed that the presently fabricated junction might be described as an S-s′-S junction with s′ denoting the superconducting region of depressed TC in the vicinity of the step edge or as an S-N-S junction with N denoting a very thin non-superconducting layer. By incorporating the MgO-based YBCO step-edge junction, high-TC radio frequency (RF) SQUID is made. The device shows decent voltage-flux curve and magnetic flux sensitivity of 250 \begin{document}$ \text{μ}\Phi_0/{\rm Hz}^{1/2} $\end{document} at 1 kHz and 77 K, comparable to the values reported in the literature. To further improve the RF SQUID performance, efforts could be devoted to optimizing the junction parameters such as the junction JC. By using the YBCO step-edge junction on MgO substrate, high-TC direct current SQUID could also be developed, as reported recently by other investigators, to demonstrate the potential of MgO-based step-edge junction in making such a kind of device with superior magnetic flux sensitivity."> Fabrication and characterization of YBa<sub>2</sub>Cu<sub>3</sub>O<sub>7–</sub><inline-formula><tex-math id="Z-20210129174424">\begin{document}$_{ \delta}$\end{document}</tex-math><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="3-20201291_Z-20210129174424.jpg"/><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="3-20201291_Z-20210129174424.png"/></alternatives></inline-formula> step-edge Josephson junctions on MgO substrate for high-temperature superconducting quantum interference devices - 必威体育下载

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Fabrication and characterization of YBa2Cu3O7– $_{ \delta}$ step-edge Josephson junctions on MgO substrate for high-temperature superconducting quantum interference devices

Wang Hong-Zhang, Li Yu-Long, Xu Tie-Quan, Zhu Zi-Qing, Ma Ping, Wang Yue, Gan Zi-Zhao
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  • Abstract views:7673
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  • Received Date:08 August 2020
  • Accepted Date:23 September 2020
  • Available Online:25 January 2021
  • Published Online:05 February 2021

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