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Control of spin state in CdSe quantum dots by coupling with magnetic semiconductor quantum dots

机译:通过与磁性半导体量子点耦合来控制CdSe量子点中的自旋状态

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We studied spin states of CdSe quantum dots (QDs) coupled with CdMnSe QDs by probing circular polarization of photoluminescence spectrum under external magnetic fields. The bandgap energies of CdSe and CdMnSe QDs are close to each other and photoluminescence mainly originates from CdSe QDs due to relatively low radiation efficiency of CdMnSe QDs. The photoluminescence lifetime as well as its intensity was decreased with increasing magnetic field, which was ascribed to the increase in the ground state wavefunctions in CdMnSe QDs. The decrease was more pronounced for spin down electrons, which was explained by the difference in spin up and down wave functions under magnetic fields. Our results show that the spin state of CdSe QDs can be manipulated by coupling with CdMnSe QDs.
机译:我们通过在外部磁场下探测光致发光光谱的圆极化,研究了与CdMnSe量子点耦合的CdSe量子点(QDs)的自旋状态。 CdSe和CdMnSe QD的带隙能量彼此接近,并且由于CdMnSe QD的辐射效率相对较低,所以光致发光主要源自CdSe QD。随着磁场的增加,光致发光寿命及其强度降低,这归因于CdMnSe量子点中基态波函数的增加。对于自旋向下的电子,这种降低更为明显,这可以用磁场下自旋向上和向下的波函数的差异来解释。我们的结果表明,可以通过与CdMnSe量子点耦合来控制CdSe量子点的自旋状态。

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