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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >The AharonovBohm oscillations and energy spectrum in two-dimensional elliptical quantum ring nanostructures
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The AharonovBohm oscillations and energy spectrum in two-dimensional elliptical quantum ring nanostructures

机译:二维椭圆量子环纳米结构中的AharonovBohm振荡和能谱

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摘要

Based on the finite element method, we present a numerical study of the AharonovBohm (AB) oscillations and electronic energy spectrum for the system of a two-dimensional elliptical quantum ring (EQR) nanostructure pierced by a static magnetic flux in the presence of local charge impurities. Strong changes are observed in the energy spectrum and in the amplitude of the AB oscillations depending on both the geometrical parameters of the EQR and the strengths, locations and screening of impurities embedded in the system. Energy gaps are opened at the integer values of due to elliptical confinement, while the opening of the gaps at the half-integer values of depends on the location of impurities. Impurities can shift the low-lying energy levels in various ways depending on their azimuthal locations.
机译:基于有限元方法,我们对存在局部电荷的静态磁通量穿透的二维椭圆量子环(EQR)纳米结构系统的AharonovBohm(AB)振荡和电子能谱进行了数值研究杂质。根据EQR的几何参数以及系统中嵌入的杂质的强度,位置和筛选,可以观察到能谱和AB振荡幅度的强烈变化。由于椭圆的限制,能隙的开度为整数,而能隙的半整数开度取决于杂质的位置。杂质可以根据其方位角位置以多种方式改变低洼能级。

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