Quantum interference in a high-transition-temperature superconductor based on nanoslits on SrTiO3 substrate

Author:

Lin Jianxin12ORCID,Huang Yicong2,Zhou Han1,Wu Yao1,Zhang Haohui1,Qin Shenghao1,Peng Xiuyan2,Wang Huachuan1,Anahory Yonathan3ORCID

Affiliation:

1. Qingdao Innovation and Development Center of Harbin Engineering University 1 , Qingdao 266000, China

2. Harbin Engineering University, College of Intelligent Systems and Engineering 2 , Harbin 150000, China

3. The Racah Institute of Physics, The Hebrew University 3 , Jerusalem 9190401, Israel

Abstract

The Josephson junction, a key component of superconducting quantum circuits, is much less mature, especially for the high-transition (high-Tc) temperature cuprate superconductors. Herein, we report on the realization of high-Tc Josephson junction based on nanoslits on a SrTiO3 substrate. We demonstrate the ability to manipulate the current–voltage characteristics of YBa2Cu3O7−x bridges continuously from superconducting current-dominated to Josephson junction behavior by changing the irradiation parameters of the focused Ga+ ion beam on a single-crystal SrTiO3 substrate. The periodic critical current that depends on the magnetic flux coupled into the superconducting quantum interference devices was observed, which exactly reflects the effects of quantum tunneling and flux quantization. To some extent, this weak link within the framework of the semiconductor manufacturing process shows the potential to provide a cost-effective, highly efficient, and reliable pathway for scaling up quantum mechanical superconducting circuits, which is promising for the fabrication process.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Publisher

AIP Publishing

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