Karnik Tushar Sanjay, Diehl Laurent, Dao Khoi Phuong, Du Qingyang, Pflügl Christian, Vakhshoori Daryoosh, Hu Juejun
Opt Express. 2024 Mar 25;32(7):11681-11692. doi: 10.1364/OE.518357.
Quantum cascade lasers (QCLs) are ubiquitous mid-infrared sources owing to their flexible designs and compact footprints. Manufacturing multiwavelength QCL chips with high power levels and good beam quality is highly desirable for many applications. In this study, we demonstrate an λ ∼ 4.9 µm monolithic, wavelength beam-combined (WBC) infrared laser source by integrating on a single chip array of five QCL gain sections with an arrayed waveguide grating (AWG). Optical feedback from the cleaved facets enables lasing, whereas the integrated AWG locks the emission spectrum of each gain section to its corresponding input channel wavelength and spatially combines their signals into a single-output waveguide. Our chip features high peak power from the common aperture exceeding 0.6 W for each input channel, with a side-mode suppression ratio (SMSR) of over 27 dB when operated in pulsed mode. Our active/passive integration approach allows for a seamless transition from the QCL ridges to the AWG without requiring regrowth or evanescent coupling schemes, leading to a robust design. These results pave the way for the development of highly compact mid-IR sources suitable for applications such as hyperspectral imaging.
量子级联激光器(QCL)由于其灵活的设计和紧凑的尺寸,是无处不在的中红外光源。制造具有高功率水平和良好光束质量的多波长QCL芯片对于许多应用来说是非常理想的。在本研究中,我们通过将五个QCL增益段的芯片阵列与阵列波导光栅(AWG)集成在一个芯片上,展示了一种波长约为4.9 µm的单片式波长光束组合(WBC)红外激光源。从解理面的光学反馈实现了激光发射,而集成的AWG将每个增益段的发射光谱锁定到其相应的输入通道波长,并将它们的信号在空间上组合到一个单输出波导中。我们的芯片每个输入通道的公共孔径具有超过0.6 W的高峰值功率,在脉冲模式下工作时,边模抑制比(SMSR)超过27 dB。我们的有源/无源集成方法允许从QCL脊到AWG的无缝过渡,而无需再生长或倏逝耦合方案,从而实现了稳健的设计。这些结果为开发适用于高光谱成像等应用的高度紧凑的中红外光源铺平了道路。