Vasil'ev Peter P, Penty Richard V, White Ian H
Opt Express. 2018 Oct 1;26(20):26156-26166. doi: 10.1364/OE.26.026156.
This paper presents theoretical and experimental studies of ultrabright internal second harmonic during femtosecond superradiant emission generation in multiple sections GaAs/AlGaAs laser structures at room temperature. Experimentally measured conversion efficiencies are by 1-2 orders of magnitude greater than expected. To explain this fact, a model based on one-dimensional nonlinear Maxwell curl equations without taking into consideration the slowly-varying envelope approximation has been developed. It has been demonstrated that strong transient periodic modulation of e-h density and refraction index dramatically affects the process of superradiance in semiconductor media and can explain the ultrastrong internal second harmonic generation.
本文介绍了室温下多段GaAs/AlGaAs激光结构中飞秒超辐射发射产生过程中超亮内二次谐波的理论和实验研究。实验测量的转换效率比预期高1-2个数量级。为了解释这一事实,开发了一种基于一维非线性麦克斯韦旋度方程且未考虑慢变包络近似的模型。结果表明,电子-空穴密度和折射率的强瞬态周期性调制会显著影响半导体介质中的超辐射过程,并能解释超强内二次谐波的产生。