Kawamura Kohei, Yoshida Tomoharu, Ishihara Jun, Ishikawa Akira, Miyajima Kensuke
Department of Applied Physics, Tokyo University of Science, Tokyo 125-8585, Japan.
Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan.
J Phys Condens Matter. 2024 Aug 1;36(43). doi: 10.1088/1361-648X/ad636c.
We studied the threshold temperature of superfluorescence (SF) generation with regard to biexcitons in CuCl quantum dots (QDs) under resonant two-photon excitation of biexcitons and resonant excitation of excitons to demonstrate the influence of initial population densities in the QDs on SF generation. As a result, the threshold temperature under the resonant excitation of excitons was higher than that under the two-photon excitation of biexcitons. This indicates that the high density of excited dots facilitates the rapid establishment of coherence among the dots, overcoming disadvantages of incomplete population inversion and formation process of biexcitons. We performed a theoretical calculation of the time profiles of the biexcitonic emission based on semiconductor luminescence equations. The experimentally obtained temperature dependence of the time profiles was qualitatively reproduced by calculating their dependence on the dephasing rate. In addition, we estimated the temperature dependence of the phase relaxation time of the biexcitons in the CuCl QDs by analyzing the temperature dependence of SF.
我们研究了在双激子的共振双光子激发以及激子的共振激发下,CuCl量子点(QD)中关于双激子的超荧光(SF)产生的阈值温度,以证明量子点中初始粒子数密度对SF产生的影响。结果表明,激子共振激发下的阈值温度高于双激子双光子激发下的阈值温度。这表明高密度的受激量子点有助于量子点之间快速建立相干性,克服了粒子数不完全反转和双激子形成过程的缺点。我们基于半导体发光方程对双激子发射的时间分布进行了理论计算。通过计算时间分布对退相速率的依赖性,定性地再现了实验获得的时间分布的温度依赖性。此外,我们通过分析SF的温度依赖性,估计了CuCl量子点中双激子的相位弛豫时间的温度依赖性。