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Quantized Ballistic Transport of Electrons and Electron Pairs in LaAlO3/SrTiO3 Nanowires

机译:Laalo3 / SRTIO3纳米线中电子和电子对的量化弹道传输

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SrTiO3-based heterointerfaces support quasi-two-dimensional (2D) electron systems that are analogous to III-V semiconductor heterostructures, but also possess superconducting, magnetic, spintronic, ferroelectric, and ferroelastic degrees of freedom. Despite these rich properties, the relatively low mobilities of 2D complex-oxide interfaces appear to preclude ballistic transport in 1D. Here we show that the 2D LaAlO3/SrTiO3 interface can support quantized ballistic transport of electrons and (nonsuperconducting) electron pairs within quasi-1D structures that are created using a well-established conductive atomic-force microscope (c-AFM) lithography technique. The nature of transport ranges from truly single-mode (1D) to three-dimensional (3D), depending on the applied magnetic field and gate voltage. Quantization of the lowest e(2)/h plateau indicate a ballistic mean-free path l(MF) similar to 20 mu m, more than 2 orders of magnitude larger than for 2D LaAlO3/SrTiO3 heterostructures. Nonsuperconducting electron pairs are found to be stable in magnetic fields as high as B = 11 T and propagate ballistically with conductance quantized at 2e(2)/h. Theories of one-dimensional (1D) transport of interacting electron systems depend crucially on the sign of the electron-electron interaction, which may help explain the highly ballistic transport behavior. The 1D geometry yields new insights into the electronic structure of the LaAlO3/SrTiO3 system and offers a new platform for the study of strongly interacting 1D electronic systems.
机译:SrTiO 3系异质支持准二维(2D)电子,它们分别类似于至III-V族半导体异质结构,而且具有超导,磁的,自旋电子,铁电,和铁弹自由度系统。尽管有这些丰富的性能,2D复合氧化物界面相对较低的迁移率似乎排除在一维弹道输运。在这里,我们表明,2D LaAlO 3的/钛酸锶接口支持量化正在使用一个完善的导电原子力显微镜(C-AFM)平版印刷技术创建的准一维结构内的电子弹道输运和(非超导)电子对。传输范围从真正的单模式(1D)到三维(3D)的性质,这取决于所施加的磁场和栅极电压。最低E(2)/ h的高原量化指示弹道平均自由路径升(MF)类似于20微米,大于2个数量级比2D LaAlO 3的/钛酸锶异质结构大。非超导电子对被发现是在磁场中的高达B = 11T的稳定,并与电导在2E(2)/ h的量化弹道传播。相互作用电子系统的一维(1D)传输的理论关键取决于电子 - 电子相互作用的迹象,这可能有助于解释高度弹道输运行为。一维几何收益率新的见解LaAlO 3的/钛酸锶体系和优惠的强相互作用的一个维电子系统的研究提供了新的平台的电子结构。

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