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Approximate methods for the solution of quantum wires and dots : Connection rules between pyramidal, cuboidal, and cubic dots

机译:量子线和点的求解的近似方法:金字塔形,立方形和立方点之间的连接规则

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摘要

Energy eigenvalues of the electronic ground state are calculated for rectangular and triangular GaAs/Ga(0.6)Al(0.4)As quantum wires as well as for cuboidal and pyramidal quantum dots of the same material. The wire (dot) geometries are approximated by a superposition of perpendicular independent finite one-dimensional potential wells. A perturbation is added to the system to improve the approximation. Excellent agreement with more complex treatments is obtained. The method is applied to investigate the ground state energy dependence on volume and aspect ratio for finite barrier cubic, cuboidal, and pyramidal quantum dots. It is shown that the energy eigenvalues of cubes are equal to those of cuboids of the same volume and aspect ratio similar to one. In addition, a relationship has been found between the volumes of pyramidal quantum dots (often the result of self-assembling in strain layered epitaxy) and cuboidal dots with the same ground state energy and aspect ratios close to one. © 1999 American Institute of Physics. udud
机译:计算矩形和三角形GaAs / Ga(0.6)Al(0.4)As量子线以及同一材料的长方体和金字塔形量子点的电子基态能量本征值。线(点)的几何形状通过垂直独立的有限一维势阱的叠加来近似。将扰动添加到系统中以改善近似度。获得了与更复杂的治疗的极好的一致性。该方法用于研究有限势立方,立方和金字塔形量子点对体积和纵横比的基态能量依赖性。结果表明,立方体的能量特征值等于相同体积和长宽比相似的长方体的能量特征值。此外,已经发现金字塔量子点的体积(通常是应变分层外延中自组装的结果)和具有相同基态能量且纵横比接近1的立方形点之间的关系。 ©1999美国物理研究所。 ud ud

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    Califano M.; Harrison P.;

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  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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