论文标题

cr $^+$ - 掺杂的量子点的带阳性激素的旋转动力学通过谐振光发光探测

Spin dynamics of positively charged excitons in Cr$^+$-doped quantum dots probed by resonant photoluminescence

论文作者

Tiwari, V., Inoue, M. Morita T., Kuroda, S. Ando S., Boukari, H., Besombes, L.

论文摘要

我们研究了由带正电的II-VI半导体量子点组成的自旋系统的动力学,该量子掺杂了单个Cr $^+$ ion。带正电荷激子的共振光致发光(PL)以及CR $^+$ spin的谐振(PL)用于分析主要的自旋松弛通道。通过可以将其视为纳米磁铁的旋转旋转的光学泵送来降低谐振PL的强度。旋转记忆可以通过非共振光激发来部分擦除。这导致谐振PL信号的增加。共振PL是共环的两极化,对应于保存Cr $^+$ spin $ \ vert s_z \ vert $的放松通道。光学转变的谐振-PL激发光谱中的观察结果,随着Cr $^+$旋转允许的变化,以确定磁原子的磁各向异性。光学泵送,自动相关测量和PL强度分布的功率依赖性表明,孔-cr $^+$ spin系统的有效温度受到局部发电子的光激励的影响。

We study the dynamics of the spin system that consist of a positively charged II-VI semiconductor quantum dot doped with a single Cr$^+$ ion. The resonant photoluminescence (PL) of the positively charged exciton coupled with the Cr$^+$ spin is used to analyze the main spin relaxation channels. The intensity of the resonant PL is reduced by an optical pumping of the spin of the resident hole-Cr$^+$ complex that can be seen as a nano-magnet. The spin memory can be partially erased by a non-resonant optical excitation. This leads to an increase of the resonant PL signal. The resonant PL is co-circularly polarized and corresponds to relaxation channels that conserve the Cr$^+$ spin $\vert S_z \vert$. The observation in the resonant-PL excitation spectra of optical transitions with a change of the Cr$^+$ spin permits to determine the magnetic anisotropy of the magnetic atom. Optical pumping, auto-correlation measurements and the power dependence of the PL intensity distribution show that the effective temperature of the hole-Cr$^+$ spin system is affected by the optical excitation through the local generation of phonons.

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