Thales Research &Technology, 1 avenue Augustin Fresnel, 91767 Palaiseau, France.
MirSense, Centre d'intégration NanoINNOV, 8 avenue de la Vauve, 91120 Palaiseau, France.
Sci Rep. 2017 Mar 13;7:44284. doi: 10.1038/srep44284.
Broad-area quantum cascade lasers with high output powers are highly desirable sources for various applications including infrared countermeasures. However, such structures suffer from strongly deteriorated beam quality due to multimode behavior, diffraction of light and self-focusing. Quantum cascade lasers presenting high performances in terms of power and heat-load dissipation are reported and their response to a nonlinear control based on optical feedback is studied. Applying optical feedback enables to efficiently tailor its near-field beam profile. The different cavity modes are sequentially excited by shifting the feedback mirror angle. Further control of the near-field profile is demonstrated using spatial filtering. The impact of an inhomogeneous gain as well as the influence of the cavity width are investigated. Compared to existing technologies, that are complex and costly, beam shaping with optical feedback is a more flexible solution to obtain high-quality mid-infrared sources.
高输出功率的宽区域量子级联激光器是各种应用的理想光源,包括红外对抗。然而,由于多模行为、光的衍射和自聚焦,这些结构的光束质量会严重恶化。本文报道了在功率和热负载耗散方面性能较高的量子级联激光器,并研究了它们对基于光反馈的非线性控制的响应。应用光反馈可以有效地调整其近场光束轮廓。通过移动反馈镜的角度,可以依次激发不同的腔模。利用空间滤波进一步演示了对近场轮廓的控制。研究了非均匀增益的影响以及腔宽的影响。与现有的复杂且昂贵的技术相比,光反馈的光束整形是获得高质量中红外光源的更灵活的解决方案。