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Multi-domain electromagnetic absorption of triangular quantum rings

机译:三角量子环的多域电磁吸收

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We present a theoretical study of the unielectronic energy spectra, electron localization, and optical absorption of triangular core-shell quantum rings. We show how these properties depend on geometric details of the triangle, such as side thickness or corners' symmetry. For equilateral triangles, the lowest six energy states (including spin) are grouped in an energy shell, are localized only around corner areas, and are separated by a large energy gap from the states with higher energy which are localized on the sides of the triangle. The energy levels strongly depend on the aspect ratio of the triangle sides, i.e., thickness/length ratio, in such a way that the energy differences are not monotonous functions of this ratio. In particular, the energy gap between the group of states localized in corners and the states localized on the sides strongly decreases with increasing the side thickness, and then slightly increases for thicker samples. With increasing the thickness the low-energy shell remains distinct but the spatial distribution of these states spreads. The behavior of the energy levels and localization leads to a thickness-dependent absorption spectrum where one transition may be tuned in the THz domain and a second transition can be tuned from THz to the infrared range of electromagnetic spectrum. We show how these features may be further controlled with an external magnetic field. In this work the electron-electron Coulomb repulsion is neglected.
机译:我们提出了对三角形核壳量子环的单电子能谱,电子定位和光吸收的理论研究。我们展示了这些属性如何取决于三角形的几何细节,例如侧面的厚度或角的对称性。对于等边三角形,最低的六个能量状态(包括自旋)被分组在一个能量壳中,仅位于拐角区域附近,并且与较大能量的状态(位于三角形的侧面)相隔较大的能隙。能量水平强烈地取决于三角形侧面的纵横比,即厚度/长度比,使得能量差不是该比例的单调函数。特别是,位于边角的一组状态与位于侧面的状态之间的能隙会随着边的厚度增加而大大减小,然后对于较厚的样本会略有增加。随着厚度的增加,低能壳保持明显,但是这些状态的空间分布扩展了。能级和局部化的行为导致了与厚度有关的吸收光谱,其中一个跃迁可以在THz域中调整,而第二个跃迁可以从THz调整到电磁频谱的红外范围。我们展示了如何通过外部磁场进一步控制这些功能。在这项工作中,电子-电子库仑排斥被忽略了。

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