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Development of a Josephson vortex two-state system based on a confocal annular Josephson junction

机译:基于共聚焦环形约瑟夫森交界处的Josephson Vortex两国系统的开发

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We report theoretical and experimental work on the development of a Josephson vortex two-state system based on a confocal annular Josephson tunnel junction (CAJTJ). The key ingredient of this geometrical configuration is a periodically variable width that generates a spatial vortex potential with bistable states. This intrinsic vortex potential can be tuned by an externally applied magnetic field and tilted by a bias current. The two-state system is accurately modeled by a one-dimensional sine-Gordon like equation by means of which one can numerically calculate both the magnetic field needed to set the vortex in a given state as well as the vortex-depinning currents. Experimental data taken at 4.2 K on high-quality Nb/Al-AlOx/Nb CAJTJs with an individual trapped fluxon advocate the presence of a robust and finely tunable double-well potential for which reliable manipulation of the vortex state has been classically demonstrated. The vortex is prepared in a given potential by means of an externally applied magnetic field, while the state readout is accomplished by measuring the vortex-depinning current in a small magnetic field. Our proof of principle experiment convincingly demonstrates that the proposed vortex two-state system based on CAJTJs is robust and workable.
机译:我们报告了基于共聚焦环形Josephson隧道交界处(CAJTJ)的约瑟夫森涡十二州系统发展的理论和实验工作。这种几何配置的关键成分是一种周期性可变的宽度,其产生具有双稳态状态的空间涡流。这种固有涡流可以通过外部施加的磁场调节并由偏置电流倾斜。双状态系统由一维正弦戈登等方程式精确地建模,借助于该方程式可以在数值上计算在给定状态以及涡旋 - 替换电流中设置涡流所需的磁场。在高质量的Nb / Al-Alox / Nb Cajtjs上拍摄的实验数据具有单独被捕的浮蜥的CAJTJS倡导存在鲁棒和精细可调谐的双井电位,该电位在涡旋状态的可靠操纵已经进行了经典展示。通过外部施加的磁场在给定电位中制备涡流,而通过测量小磁场中的涡流 - 脱模电流来实现状态读出。我们的原则证据实验令人信服地表明,基于CAJTJS的提议的涡旋两国系统是强大而可行的。

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