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First-principles study of two-dimensional electron and hole gases at the head-to-head and tail-to-tail 180 degrees domain walls in PbTiO3 ferroelectric thin films

机译:在PBTIO3铁电薄膜中,在头部到头和尾尾180度域壁上的二维电子和空穴气体的第一原理研究

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摘要

We study from first principles the structural and electronic properties of head-to-head (HH) and tail-to-tail (TT) 180 degrees domain walls in isolated free-standing PbTiO3 slabs. For sufficiently thick domains (n = 16 unit cells of PbTiO3), a transfer of charge from the free surfaces to the domain walls to form localized electron (in the HH) and hole (in the TT) gases in order to screen the bound polarization charges is observed. The electrostatic driving force behind this electronic reconstruction is clearly visible from the perfect match between the smoothed free charge densities and the bound charge distribution, computed from a finite difference of the polarization profile obtained after the relaxation of the lattice degrees of freedom. The domain wall widths, of around six unit cells, are larger than in the conventional 180 degrees. neutral configurations. Since no oxygen vacancies, defects, or dopant atoms are introduced in our simulations, all the previous physical quantities are the intrinsic limits of the system. Our results support the existence of an extra source of charge at the domain walls to explain the enhancement of the conductivity observed in some domains walls of prototypical, insulating in bulk, perovskite oxides.
机译:我们从第一个原则上学习了头到头部(HH)的结构和电子特性和尾部到尾部(TT)180度域墙壁中的隔离式PBTIO3板坯。对于足够厚的域(n = 16单位单元的PBTIO3),将电荷从自由表面转移到畴壁以形成局部电子(在HH)和孔(在TT)气体中以筛选结合的极化观察到收费。这种电子重建后面的静电驱动是从平滑的自由电荷密度和结合电荷分布之间的完美匹配清楚地看到,从晶格自由度放松之后获得的偏振曲线的有限差异计算。域壁宽度约为六个单元电池,大于传统的180度。中性配置。由于我们的模拟中没有缺氧,缺陷或掺杂剂原子,因此所有以前的物理量都是系统的内在限制。我们的结果支持域墙上的额外收费来源,以解释在散装,散装,钙钛矿氧化物中的一些域墙壁中观察到的电导率的增强。

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  • 来源
    《Physical review, B》 |2020年第17期|共7页
  • 作者单位

    Univ Cantabria Dept Ciencias Tierra &

    Fis Mat Condensada Cantabria Campus Int Ave Castros S-N Santander 39005 Spain;

    Univ Cantabria Dept Ciencias Tierra &

    Fis Mat Condensada Cantabria Campus Int Ave Castros S-N Santander 39005 Spain;

    Kaimosi Friends Univ Coll Dept Phys Sci Computat &

    Theoret Phys Grp Kaimosi 38550309 Kenya;

    Tech Univ Kenya Dept Phys &

    Space Sci Mat Modeling Grp Nairobi 5242800200 Kenya;

    Univ Cantabria Dept Ciencias Tierra &

    Fis Mat Condensada Cantabria Campus Int Ave Castros S-N Santander 39005 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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