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Josephson effect in the strontium titanate/lanthanum aluminate junction |
Xing Yang(阳星), Jie Chen(陈杰), Yabin Yu(余亚斌), Quanhui Liu(刘全慧) |
School of Physics and Electronics, Hunan University, Changsha 410082, China |
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Abstract We report theoretical studies on the newly discovered novel Josephson effect and scanning tunneling spectroscopy (STS) at the interface of strontium titanate/lanthanum aluminate (STO/LAO). With a phenomenological boson-fermion model, the density of states is calculated and the results are consistent with the STS experiments. A typical calculation of Josephson effect is performed, and it is in qualitative agreement with the experiments. The calculations indicate that the gap states come from the pairing of quasi-particles with a finite total momentum and the Josephson current comes from the tunneling of quasi-particle pairs with zero momentum. The quasi-particles are Bogoliubov quasi-particles. Moreover, the fits using Kulik's formula imply that the Josephson junction at the STO/LAO interface has a point contact with the clean superconductor limit.
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Received: 28 February 2019
Revised: 26 June 2019
Accepted manuscript online:
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PACS:
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74.20.-z
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(Theories and models of superconducting state)
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74.25.F-
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(Transport properties)
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74.50.+r
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(Tunneling phenomena; Josephson effects)
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Fund: Project supported by the National Natural Science Foundation of China (Grant No. 11675051) and China Scholarship Council (Grant No. 201506130054). |
Corresponding Authors:
Xing Yang
E-mail: yangxing@hnu.edu.cn
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Cite this article:
Xing Yang(阳星), Jie Chen(陈杰), Yabin Yu(余亚斌), Quanhui Liu(刘全慧) Josephson effect in the strontium titanate/lanthanum aluminate junction 2019 Chin. Phys. B 28 097401
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