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Engineered spin-orbit interactions in LaAlO3/SrTiO3-based 1D serpentine electron waveguides.


ABSTRACT: The quest to understand, design, and synthesize new forms of quantum matter guides much of contemporary research in condensed matter physics. One-dimensional (1D) electronic systems form the basis for some of the most interesting and exotic phases of quantum matter. Here, we describe a family of quasi-1D nanostructures, based on LaAlO3/SrTiO3 electron waveguides, in which a sinusoidal transverse spatial modulation is imposed. These devices display unique dispersive features in the subband spectra, namely, a sizeable shift (?7 T) in the spin-dependent subband minima, and fractional conductance plateaus. The first property can be understood as an engineered spin-orbit interaction associated with the periodic acceleration of electrons as they undulate through the nanowire (ballistically), while the second property signifies the presence of enhanced electron-electron scattering in this system. The ability to engineer these interactions in quantum wires contributes to the tool set of a 1D solid-state quantum simulation platform.

SUBMITTER: Briggeman M 

PROVIDER: S-EPMC7688326 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Engineered spin-orbit interactions in LaAlO<sub>3</sub>/SrTiO<sub>3</sub>-based 1D serpentine electron waveguides.

Briggeman Megan M   Li Jianan J   Huang Mengchen M   Lee Hyungwoo H   Lee Jung-Woo JW   Eom Kitae K   Eom Chang-Beom CB   Irvin Patrick P   Levy Jeremy J  

Science advances 20201125 48


The quest to understand, design, and synthesize new forms of quantum matter guides much of contemporary research in condensed matter physics. One-dimensional (1D) electronic systems form the basis for some of the most interesting and exotic phases of quantum matter. Here, we describe a family of quasi-1D nanostructures, based on LaAlO<sub>3</sub>/SrTiO<sub>3</sub> electron waveguides, in which a sinusoidal transverse spatial modulation is imposed. These devices display unique dispersive features  ...[more]

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