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Nonlinear optical characteristics of an exciton in a GaSb-capped InSb heterodot: role of size control

机译:煤气盖INSB异滴滴中激子的非线性光学特性:尺寸控制的作用

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摘要

The optical characteristics of a bound electron-hole quasiparticle inside a GaSb-capped InSb nanodot were investigated using a combination between a density-matrix approach and variational calculations. Our theoretical model considers the electric permittivity mismatch between the core and shell materials via the self-energy term obtained by the means of an image charge approach. Furthermore, the core-to-shell conduction and valence band offsets were modeled by finite-depth confinement potentials. To elucidate the impact of the nanoheterodot spatial parameters on the confined exciton optical properties, we have investigated the change of the refractive index, the optical absorption coefficient, and the 1p-1s exciton transition energy with respect to the nanodot shape. Our numerical results exhibit the great potential for the improvement of the exciton optical properties by tailoring the nanodot size. It was also obtained that, for a fixed core radius, the resonance peak position of the optical absorption coefficient was still constant after a certain shell thickness value. Otherwise, decreasing the shell thickness leads to blue-shifting the 1p-1s transition energy.
机译:使用密度 - 基质方法与变分算法之间的组合研究了GASB-CAPPED NANODOT内部的结合电子空穴Quaparicle的光学特性。我们的理论模型通过通过图像电荷方法获得的自能术语来考虑核心和壳材料之间的电频率不匹配。此外,通过有限深度限制电位建模核心 - 外壳传导和价带偏移。为了阐明纳米仪介质间隙参数对狭窄的激子光学性质的影响,我们研究了相对于纳米蛋白形状的折射率,光学吸收系数和1P-1S激发能量的变化。我们的数值结果通过定制纳米型尺寸来提高激子光学性能的巨大潜力。还获得了,对于固定芯半径,在某个壳体厚度值之后,光学吸收系数的谐振峰值位置仍然是恒定的。否则,减小壳体厚度导致蓝色移位1P-1S过渡能量。

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  • 来源
    《European Physical Journal Plus》 |2020年第2期|共12页
  • 作者单位

    Univ Moulay Ismail Dept Phys Fac Sci Unite Associee CNRST URAC 08 LP2MS BP 11201 Meknes Morocco;

    Univ Moulay Ismail Dept Phys Fac Sci Unite Associee CNRST URAC 08 LP2MS BP 11201 Meknes Morocco;

    Univ Moulay Ismail Dept Phys Fac Sci Unite Associee CNRST URAC 08 LP2MS BP 11201 Meknes Morocco;

    Uppsala Univ Dept Phys &

    Astron Condensed Matter Theory Grp S-75120 Uppsala Sweden;

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  • 正文语种 eng
  • 中图分类 物理学;
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