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Chiral Optical Properties of Tapered Semiconductor Nanoscrolls

机译:锥形半导体纳米筒的手性光学性能

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Large surface-to-volume ratio, one-dimensional quantum confinement, and strong optical activity make chiral nanoscrolls ideal for the detection and sensing of small chiral molecules. Here, we present a simple physical model of chiroptical phenomena in multilayered tapered semiconductor nanoscrolls. Our model is based on a linear transformation of coordinates, which converts nanoscrolls into flat but topologically distorted nanoplatelets whose optical properties can then be treated analytically. As an illustrative application example, we analyze absorption and circular dichroism spectra of CdSe nanoscrolls using an eight-band model of CdSe. We show that the optical activity of the nanoscrolls originates from the chiral distortion of their crystal lattice and determine selection rules for the optically active interband transitions. The results of our study may prove useful for the modeling and design of semiconductor nanoscrolls and nanoscroll-based materials.
机译:大量的表面到体积比,一维量子限制和强光学活性,使手性纳米杆的理想选择是对小手性分子的检测和感测。 在这里,我们在多层锥形半导体纳米筒中呈现了一种简单的Chireoptical现象的物理模型。 我们的模型基于坐标的线性变换,其将纳米筒转化为平坦但拓扑扭曲的纳米片,然后可以分析地治疗光学性质。 作为说明性应用例,我们使用八带CDSE模型分析CDSE NanoScrolls的吸收和圆形二中间光谱。 我们表明纳米晶的光学活性来自其晶格的手性变形,并确定光学主动基带转换的选择规则。 我们的研究结果可能对半导体纳米筒和纳秒基材料的建模和设计有用。

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