首页> 外文期刊>Acta Physica Polonica. A >Dependence of exciton binding energy on magnetic field in parabolic quantum well made of diluted magnetic semiconductors
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Dependence of exciton binding energy on magnetic field in parabolic quantum well made of diluted magnetic semiconductors

机译:激子结合能对稀磁半导体制成的抛物线形量子阱中磁场的依赖性

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Influence of an external magnetic field on exciton binding in parabolic quantum wells composed of diluted magnetic semiconductors are studied variationally using separable trial wave functions. The effect is due to a change of shape of the confining potential induced by an external magnetic field. The validity of the results of the calculations is checked by solving nu- merically the corresponding one-dimensional Schrodinger equations. Further, we check the results by performing variational calculations in the case of the Exll exciton(i.e. with electron and hole in their ground subbands)with a Non-separable trial wave function. It is shown that, contrary to the case of a Rectangular quantum well, for the parabolic quantum well the magnetic field Dependence of the binding energy is significant.
机译:使用可分离的试波函数,以变化的方式研究了外部磁场对由稀磁半导体组成的抛物线形量子阱中激子结合的影响。该效果是由于外部磁场引起的限制电位的形状变化引起的。通过数值求解相应的一维薛定inger方程,可以检查计算结果的有效性。此外,我们在Exll激子(即电子和空穴在其地子带中)具有不可分离的试验波函数的情况下,通过执行变分计算来检查结果。结果表明,与矩形量子阱的情况相反,对于抛物线量子阱,磁场对结合能的依赖性是显着的。

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