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Single-exciton Spectroscopy Of Single Mn Doped Inas Quantum Dots

机译:单Mn掺杂Inas量子点的单激子光谱

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The optical spectroscopy of a single InAs quantum dot doped with a single Mn atom is studied using a model Hamiltonian that includes the exchange interactions between the spins of the quantum dot electron-hole pair, the Mn atom, and the acceptor hole. Our model permits linking the photoluminescence spectra to the Mn spin states after photon emission. We focus on the relation between the charge state of the Mn, A0 or A', and the different spectra which result through either band-to-band or band-to-acceptor transitions. We consider both neutral and negatively charged dots. Our model is able to account for recent experimental results on single Mn doped InAs photoluminescence spectra and can be used to account for future experiments in GaAs quantum dots. Similarities and differences with the case of single Mn doped CdTe quantum dots are discussed.
机译:使用模型哈密顿量研究了掺杂有单个Mn原子的单个InAs量子点的光谱,该模型包含了量子点电子-空穴对的自旋,Mn原子和受体空穴之间的交换相互作用。我们的模型允许将光致发光光谱与光子发射后的Mn自旋态联系起来。我们着重研究Mn,A0或A'的电荷状态与通过带间或带间转换产生的不同光谱之间的关系。我们考虑中性和带负电荷的点。我们的模型能够说明单锰掺杂InAs光致发光光谱上的最新实验结果,并且可以用于说明GaAs量子点中的未来实验。讨论了与单个Mn掺杂的CdTe量子点情况的异同。

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