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首页> 外文期刊>Physica, B. Condensed Matter >Hydrogenic impurity bound polaron in a parabolic quantum dot with arbitrary electronphonon coupling strength
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Hydrogenic impurity bound polaron in a parabolic quantum dot with arbitrary electronphonon coupling strength

机译:具有任意电子声子耦合强度的抛物量子点中的水生杂质结合极化子

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A variational approach is employed to obtain the ground and the first excited state binding energies of an electron bound to a hydrogenic impurity in a polar semiconductor quantum dot (QD) with symmetric parabolic confinement in both two and three-dimensions. We perform calculations for the entire range of the electronphonon coupling constant and the Coulomb binding parameter and for arbitrary confinement length. It is found that the binding energy of ground and first excited state is larger in a two-dimension (2D) dot than in a three-dimension (3D) dot and this trend is more pronounced with the increase of the electronphonon coupling constant for the same value of the Coulomb binding parameter and confinement length. Furthermore, the ground and the first excited state binding energy increases with increasing the Coulomb binding parameter in both 2D and 3D QDs for the same electronphonon coupling constant.
机译:采用变分方法来获得结合到极性半导体量子点(QD)中的氢杂质的电子的基态和第一激发态结合能,该极性半导体量子点在二维和三维上均具有对称抛物线约束。我们对电子声子耦合常数和库仑结合参数的整个范围以及任意约束长度进行计算。发现二维(2D)点的基态和第一激发态的结合能比三维(3D)点的基能和第一激发态的结合能大,并且随着电子声子耦合常数的增加,这种趋势更加明显。库仑结合参数和限制长度的值相同。此外,对于相同的电子声子耦合常数,在2D和3D QD中,基态和第一激发态结合能都随库仑结合参数的增加而增加。

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