论文标题

CDSE纳米晶体在磁场中的极化发射:暗激子的重组的角色

Polarized emission of CdSe nanocrystals in magnetic field: the role of phonon-assisted recombination of the dark exciton

论文作者

Qiang, Gang, Golovatenko, Aleksandr A., Shornikova, Elena V., Yakovlev, Dmitri R., Rodina, Anna V., Zhukov, Evgeny A., Kalitukha, Ina V., Sapega, Victor F., Kaibyshev, Vadim K., Prosnikov, Mikhail A., Christianen, Peter C. M., Onushchenko, Aleksei A., Bayer, Manfred

论文摘要

在高达30台特斯拉的高磁场中,研究了在玻璃基质中合成的CDSE纳米晶体中激子的重组动力学和自旋极化。通过增加温度和磁场来加速动力学,证实了低温光致发光(PL)的深色激子性质。磁场中的圆极化PL揭示了几种异常的外观:(i)偏振度的光谱依赖性,(ii)其低饱和值,以及(iii)Zeeman组件的强度更高,能量较高。后一个特征是与激子自旋旋转阶段的热种群矛盾的最令人惊讶的特征。以前在湿化学合成的CDSE纳米晶体的集合中观察到了相同的矛盾,但尚不清楚。我们提出了一种理论,该理论解释了所有观察到的特征,并表明纳米晶体合奏的圆极化PL最大值的倒下是零声子(ZPL)和一个光学声子(1PL)辅助黑暗激子的竞争的结果。理论模型的基本方面是通过ZPL和1PL重组通道的深色激子发射的不同极化特性,以及从超过光学声子能量的纳米晶体的集合中对PL光谱的不均匀扩展。

The recombination dynamics and spin polarization of excitons in CdSe nanocrystals synthesized in a glass matrix are investigated using polarized photoluminescence in high magnetic fields up to 30 Tesla. The dynamics are accelerated by increasing temperature and magnetic field, confirming the dark exciton nature of the low-temperature photoluminescence (PL). The circularly polarized PL in magnetic fields reveals several unusual appearances: (i) a spectral dependence of the polarization degree, (ii) its low saturation value, and (iii) a stronger intensity of the Zeeman component which is higher in energy. The latter feature is the most surprising being in contradiction with the thermal population of the exciton spin sublevels. The same contradiction was previously observed in the ensemble of wet-chemically synthesized CdSe nanocrystals, but was not understood. We present a theory which explains all the observed features and shows that the inverted ordering of the circular polarized PL maxima from the ensemble of nanocrystals is a result of competition between the zero phonon (ZPL) and one optical phonon (1PL) assisted emission of the dark excitons. The essential aspects of the theoretical model are different polarization properties of the dark exciton emission via ZPL and 1PL recombination channels and the inhomogeneous broadening of the PL spectrum from the ensemble of nanocrystals exceeding the optical phonon energy.

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