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Critical thickness for the two-dimensional electron gas in LaTiO3/SrTiO3 superlattices

机译:LaTiO3 / SrTiO3超晶格中二维电子气的临界厚度

摘要

Transport dimensionality of Ti d electrons in (LaTiO3)(1)/(SrTiO3)(N) superlattices has been investigated using density functional theory with local spin-density approximation + U method. Different spatial distribution patterns have been found between Ti t(2g) orbital electrons. The d(xy) orbital electrons are highly localized near interfaces due to the potentials by positively charged LaO layers, while the degenerate d(yz) and d(xz) orbital electrons are more distributed inside SrTiO3 insulators. For N >= 3 unit cells (u.c.), the Ti d(xy) densities of state exhibit the staircaselike increments, which appear at the same energy levels as the d(xy) flat bands along the Gamma-Z direction in band structures. The k(z)-independent discrete energy levels indicate that the electrons in d(xy) flat bands are two-dimensional electron gases (2DEGs) which can transport along interfaces, but they cannot transport perpendicularly to interfaces due to the confinements in the potential wells by LaO layers. Unlike the d(xy) orbital electrons, the d(yz) and d(xz) orbital electrons have three-dimensional (3D) transport characteristics, regardless of SrTiO3 thicknesses. The 2DEG formation by d(xy) orbital electrons, when N >= 3 u.c., indicates the existence of critical SrTiO3 thickness where the electron transport dimensionality starts to change from 3D to 2D in (LaTiO3)(1)/(SrTiO3)(N) superlattices
机译:利用密度泛函理论和局部自旋密度近似+ U方法研究了Ti d电子在(LaTiO3)(1)/(SrTiO3)(N)超晶格中的传输维数。在Ti t(2g)轨道电子之间发现了不同的空间分布模式。由于带正电的LaO层的电势,d(xy)轨道电子高度集中在界面附近,而退化的d(yz)和d(xz)轨道电子则更分布在SrTiO3绝缘子内部。对于N> = 3个单位晶胞(u.c.),状态的Ti d(xy)密度表现出阶梯状的增量,在能带结构中沿着γ-Z方向与d(xy)平坦能带的能级相同。独立于k(z)的离散能级表明d(xy)平带中的电子是可以沿界面传输的二维电子气(2DEG),但由于势能的限制,它们不能垂直于界面传输。井由LaO层组成。与d(xy)轨道电子不同,d(yz)和d(xz)轨道电子具有三维(3D)传输特性,而与SrTiO3的厚度无关。当N> = 3 uc时,由d(xy)轨道电子形成2DEG表示存在临界SrTiO3厚度,其中(LaTiO3)(1)/(SrTiO3)(N)中的电子传输维数开始从3D变为2D。 )超晶格

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  • 作者

    You Jeong Ho; Lee JunHee;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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