KTaO3-based editable superconducting diode
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Abstract
Superconducting diodes, which enable dissipationless supercurrent flow in one direction while blocking it in the reverse direction, are emerging as pivotal components for superconducting electronics. The development of editable superconducting diodes could unlock transformative applications, including dynamically reconfigurable quantum circuits that adapt to operational requirements. Here, we report the first observation of the superconducting diode effect (SDE) in LaAlO3/KTaO3 heterostructures—a two-dimensional oxide interface superconductor with exceptional tunability. We observe a strong SDE in Hall-bar (or strip-shaped) devices under perpendicular magnetic fields (< 15 Oe), with efficiencies above 40% and rectification signals exceeding 10 mV. Through conductive atomic force microscope lithography, we demonstrate reversible nanoscale editing of the SDE’s polarity and efficiency by locally modifying the superconducting channel edges. This approach enables multiple nonvolatile configurations within a single device, realizing an editable superconducting diode. Our work establishes LaAlO3/KTaO3 as a platform for vortex-based nonreciprocal transport and provides a pathway toward designer quantum circuits with on-demand functionalities.
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Cite this article:
Yishuai Wang, Wenze Pan, Meng Zhang, Yanwu Xie. KTaO
3-based editable superconducting diodeJ.
Chin. Phys. Lett..
DOI: 10.1088/0256-307X/43/1/010713
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Yishuai Wang, Wenze Pan, Meng Zhang, Yanwu Xie. KTaO3-based editable superconducting diodeJ. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/43/1/010713
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Yishuai Wang, Wenze Pan, Meng Zhang, Yanwu Xie. KTaO3-based editable superconducting diodeJ. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/43/1/010713
|
Yishuai Wang, Wenze Pan, Meng Zhang, Yanwu Xie. KTaO3-based editable superconducting diodeJ. Chin. Phys. Lett.. DOI: 10.1088/0256-307X/43/1/010713
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