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Virtual-bound, filamentary and layered states in a box-shaped quantum dot of square potential form the exact numerical solution of the effective mass Schrodinger equation

机译:方形势能的箱形量子点中的虚拟束缚,丝状和层状状态形成有效质量薛定equation方程的精确数值解

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摘要

The effective mass Schrodinger equation of a QD of parallelepipedic shape with a square potential well is solved by diagonalizing the exact Hamiltonian matrix developed in a basis of separation-of-variables wavefunctions. The expected below bandgap bound states are found not to differ very much from the former approximate calculations. In addition, the presence of bound states within the conduction band is confirmed. Furthermore, filamentary states bounded in two dimensions and extended in one dimension and layered states with only one dimension bounded, all within the conduction band which are similar to those originated in quantum wires and quantum wells coexist with the ordinary continuum spectrum of plane waves. All these subtleties are absent in spherically shaped quantum dots, often used for modeling.
机译:通过将基于变量分离波函数的精确汉密尔顿矩阵对角化,可以解决具有方势阱的平行六面体形状的量子点的有效质量Schrodinger方程。发现预期的低于带隙界的状态与之前的近似计算没有太大差异。另外,证实了在导带内存在结合态。此外,丝状态在二维范围内并在一个维度上延伸,而层状态仅在一个范围内受限制,它们都在导带内,这类似于源自量子线和量子阱的导带,并与平面波的普通连续谱共存。通常用于建模的球形量子点不存在所有这些细微差别。

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