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ElectrochemicalTuning of Metal Insulator Transition and Nonvolatile Resistive Switchingin Superconducting Films

机译:电化学的金属绝缘子过渡和非易失性电阻开关的调谐在超导膜中

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摘要

Modulation of carrier concentration in strongly correlated oxides offers the unique opportunity to induce different phases in the same material, which dramatically change their physical properties, providing novel concepts in oxide electronic devices with engineered functionalities. This work reports on the electric manipulation of the superconducting to insulator phase transition in YBa2Cu3O7−δ thin films by electrochemical oxygen doping. Both normal state resistance and the superconducting critical temperature can be reversibly manipulated in confined active volumes of the film by gate-tunable oxygen diffusion. Vertical and lateral oxygen mobility may be finely modulated, at the micro- and nano-scale, by tuning the applied bias voltage and operating temperature thus providing the basis for the design of homogeneous and flexible transistor-like devices with loss-less superconducting drain–source channels. We analyze the experimental results in light of a theoretical model, which incorporates thermally activated and electrically driven volume oxygen diffusion.
机译:高度相关的氧化物中载流子浓度的调制提供了在同一材料中诱导不同相的独特机会,这会显着改变其物理性质,从而为具有工程功能的氧化物电子设备提供了新颖的概念。这项工作报道了通过电化学氧掺杂对YBa2Cu3O7-δ薄膜中超导到绝缘体相变的电操纵。正常状态下的电阻和超导临界温度都可以通过栅极可调的氧扩散可逆地控制在薄膜的有效容积中。通过调节施加的偏置电压和工作温度,可以在微米和纳米级上精细地调节垂直和横向的氧迁移率,从而为设计具有无损耗超导漏极的均质且灵活的类似晶体管的器件提供了基础。源渠道。我们根据理论模型分析了实验结果,该模型结合了热激活和电驱动的体积氧扩散。

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