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Nanopatterning of Weak Links in Superconducting Oxide Interfaces

机译:超导氧化物界面弱链路的纳米透明仪

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摘要

The interface between two wide band-gap insulators, LaAlO3 and SrTiO3 (LAO/STO), hosts a quasi-two-dimensional electron gas (q2DEG), two-dimensional superconductivity, ferromagnetism, and giant Rashba spin-orbit coupling. The co-existence of two-dimensional superconductivity with gate-tunable spin-orbit coupling and multiband occupation is of particular interest for the realization of unconventional superconducting pairing. To investigate the symmetry of the superconducting order parameter, phase sensitive measurements of the Josephson effect are required. We describe an approach for the fabrication of artificial superconducting weak links at the LAO/STO interface using direct high-resolution electron beam lithography and low-energy argon ion beam irradiation. The method does not require lift-off steps or sacrificial layers. Therefore, resolution is only limited by the electron beam lithography and pattern transfer. We have realized superconducting weak links with a barrier thickness of 30–100 nm. The barrier transparency of the weak links can be controlled by the irradiation dose and further tuned by a gate voltage. Our results open up new possibilities for the realization of quantum devices in oxide interfaces.
机译:两个宽带间隙绝缘子,LAALO3和SRTIO3(LAO / STO)之间的界面,托管准二维电子气(Q2DEG),二维超导,铁磁和巨型RASHBA旋转轨道耦合。具有栅极可调旋转轨道耦合和多频带职业的二维超导性的共存是对非传统超导配对的实现特别令人兴趣。为了研究超导阶参数的对称性,需要约瑟夫森效应的相敏测量。我们描述了一种使用直接高分辨率电子束光刻和低能量氩离子束照射在老挝/ STO接口处制造人工超导弱链路的方法。该方法不需要剥离步骤或牺牲层。因此,分辨率仅受电子束光刻和图案转移的限制。我们已经实现了超导弱链路,屏障厚度为30-100nm。弱链路的屏障透明度可以由辐射剂量控制并通过栅极电压进一步调谐。我们的结果开辟了在氧化物接口中实现量子器件的新可能性。

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