首页> 外文期刊>Physical Review, B. Condensed Matter >THICKNESS EFFECT ON IMPURITY-BOUND POLARONIC ENERGY LEVELS IN A PARABOLIC QUANTUM DOT IN MAGNETIC FIELDS
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THICKNESS EFFECT ON IMPURITY-BOUND POLARONIC ENERGY LEVELS IN A PARABOLIC QUANTUM DOT IN MAGNETIC FIELDS

机译:厚度对磁场中抛物线形量子点杂质能级极化能级的影响

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摘要

Energy levels of an impurity atom and its binding energy in a quantum dot with or without electron-phonon interactions are obtained by the second-order perturbation theory. The dot is confined laterally by a parabolic potential in quantum-well structures. The energy correction is expressed as a function of the strength of lateral confinement, the applied magnetic held, and the thickness of the quantum dot in question. It is shown that the binding energy depends sensitively on the thickness if it is of the order of the polaron size or less. In the case of thicker quantum dots, the finite thickness reduces the binding energy by approximately 10%. [References: 29]
机译:通过二阶扰动理论获得了杂质原子的能级及其在具有或没有电子-声子相互作用的量子点中的结合能。该点被量子阱结构中的抛物线势横向限制。能量校正表示为横向约束强度,所施加的磁性保持力和所讨论的量子点厚度的函数。已经表明,如果结合能为极化子尺寸或更小,则结合能敏感地取决于厚度。对于较厚的量子点,有限的厚度会使结合能降低约10%。 [参考:29]

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