首页> 外文期刊>The European physical journal, B. Condensed matter physics >Polaronic correction to the first excited electronic energy level in an anisotropic semiconductor quantum dot
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Polaronic correction to the first excited electronic energy level in an anisotropic semiconductor quantum dot

机译:对各向异性半导体量子点中的第一激发电子能级进行极化校正

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摘要

Within the framework of second-order Rayleigh-Schrodinger perturbation theory, the polaronic correction to the first excited state energy of an electron in an quantum dot with anisotropic parabolic confinements is presented. Compared with isotropic confinements, anisotropic confinements will make the degeneracy of the excited states to be totally or partly lifted. On the basis of a three-dimensional Frohlich's Hamiltonian with anisotropic confinements, the first excited state properties in two-dimensional quantum dots as well as quantum wells and wires can also be easily obtained by taking special limits. Calculations show that the first excited polaronic effect can be considerable in small quantum dots.
机译:在二阶瑞利-薛定inger摄动理论的框架内,提出了对具有各向异性抛物线约束的量子点中电子的第一激发态能量的极化校正。与各向同性约束相比,各向异性约束将使激发态的简并性全部或部分解除。在具有各向异性约束的三维Frohlich哈密顿量的基础上,通过采取特殊的限制,还可以轻松获得二维量子点以及量子阱和导线中的第一激发态性质。计算表明,在小量子点中,首次激发的极化子效应可能相当大。

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