Electrically controllable nonreciprocal Josephson junctions with an atomic layer deposition prepared tunnel barrier
ORAL
Abstract
We report the observation of nonreciprocal Josephson or Josephson diode effect in Josephson tunnel junctions (JTJs) featuring a composite tunnel barrier of Al2O3/Hf0.8Zr0.2O2 (AO/HZO) prepared by atomic layer deposition, which is compatible with Complementary Metal-Oxide-Semiconductor (CMOS) technologies. These junctions, featuring TiN and Nb as the two superconducting electrodes, were found to exhibit Josephson coupling whose magnitude depends on the direction of the supercurrent in the absence of an external magnetic field. The substantial nonreciprocity could be tuned by a simple scheme of applying an electrical training current several times the critical current of the junction. We attribute these observations to the coexistence of positive and negative Josephson couplings with the latter facilitated by the indirect tunneling through localized states in the tunnel barrier. While ferroelectricity of the ultrathin layer of HZO is not demonstrated in the current devices, a ferroelectric tunnel barrier will provide additional tunability by exploiting its reversible remnant polarization, a direction that is currently being explored. Our work suggests a potential pathway for integrating nonreciprocal JTJs into CMOS technology for quantum technologies based on superconducting electronics.
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Presenters
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Shaoqing Ding
Pennsylvania State University
Authors
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Shaoqing Ding
Pennsylvania State University
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Jinyuan Yao
Pennsylvania State University
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Zhen Bi
Pennsylvania State University
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Quyen T Tran
Pennsylvania State University
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Bangzhi Liu
Pennsylvania State University
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Qi Li
Pennsylvania State University
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Susan E Trolier-Mckinstry
Pennsylvania State University
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Thomas Jackson
Pennsylvania State University
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Ying Liu
Pennsylvania State University