Katsuno Shumpei, Inoue Takuya, Yoshida Masahiro, Zoysa Menaka De, Ishizaki Kenji, Noda Susumu
Opt Express. 2021 Aug 2;29(16):25118-25132. doi: 10.1364/OE.427783.
We develop a self-consistent theoretical model for simulating the lasing characteristics of photonic-crystal surface-emitting lasers (PCSELs) under continuous-wave (CW) operation that takes into account thermal effects caused by current injection. Our model enables us to analyze the lasing characteristics of PCSELs under CW operation by solving self-consistently the changes in the in-plane optical gain and refractive index distribution, which is associated with heat generation and temperature rise, and the change in the oscillation modes. We reveal that the lasing band-edge selectivity and beam quality of the PCSELs are affected by the spatial distribution of the band-edge frequency of the photonic crystal formed by the refractive index distribution, which depends on the temperature distribution in the resonator. Furthermore, we show that single-mode lasing with narrow beam divergence can be realized even at high current injection under CW operation by introducing a photonic-crystal structure with an artificially formed lattice constant distribution, which compensates such band-edge frequency distribution.
我们开发了一种自洽理论模型,用于模拟连续波(CW)工作下光子晶体表面发射激光器(PCSEL)的激光特性,该模型考虑了电流注入引起的热效应。我们的模型通过自洽求解与发热和温度上升相关的面内光学增益和折射率分布的变化以及振荡模式的变化,从而能够分析连续波工作下PCSEL的激光特性。我们发现,PCSEL的激光带边选择性和光束质量受由折射率分布形成的光子晶体带边频率的空间分布影响,而该空间分布取决于谐振器中的温度分布。此外,我们表明,通过引入具有人工形成的晶格常数分布的光子晶体结构,即使在连续波工作下高电流注入时也能实现具有窄光束发散的单模激光,该结构可补偿这种带边频率分布。