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Design and fabrication of efficient collimation and focusing optics formid-IR quantum cascade lasers

机译:中红外量子级联激光器的高效准直和聚焦光学器件的设计与制造

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Quantum cascade lasers (QCL) are a new class of solid-state lasers capable of delivering mid-infrared (mid-IR) radiation wavelengths from 3.5 μm to 25 μm. QCLs are finding extensive use in chemical sensing applications due to the abundance of absorption features in the molecular fingerprint region spanned by these sources. They are also being exploited in the field of electro-optical infrared countermeasures. QCL devices exhibit an elliptical emission profile that is highly divergent in the fast axis of the laser waveguide. The far-field profile of the QCL emission, 62° and 32° ± 2° for the fast and slow axes, respectively, places stringent demands on the design of efficient collimation lenses. Because of the current lack of commercially available mid-IR optical components, QCL users must design and fabricate custom micro-optics to efficiently collect, collimate, and focus the QCL emission. In this paper, we report the design, fabrication, and characterization of germanium aspheric collimating and focusing optics designed for mid-IR Fabry-Perot QCLs with an emission wavelength of 8.77 μm. Custom aspheric collimating and focusing lenses with a numerical aperture (NA) of 0.85 and 0.20, respectively, were designed and fabricated using single-point diamond turning. Measurements of the transmitted wavefront error at mid-IR wavelengths showed diffraction-limited performance with Strehl ratios >0.94 and >0.99 for the collimation and focusing lenses, respectively. A beam propagation figure of merit (M~2) of 1.8 and 1.2 was measured for the fast and slow axes, respectively, of a Fabry-Perot QCL using a confocal optical system comprised of these lenses.
机译:量子级联激光器(QCL)是一类新型的固态激光器,能够提供从3.5μm到25μm的中红外(mid-IR)辐射波长。由于这些来源所跨越的分子指纹区域中的吸收特征丰富,因此QCL在化学传感应用中得到了广泛使用。它们也在电光红外对策领域得到开发。 QCL器件的椭圆发射轮廓在激光波导的快轴上高度发散。 QCL发射的远场轮廓,快轴和慢轴分别为62°和32°±2°,这对高效准直透镜的设计提出了严格要求。由于当前缺少市售的中红外光学组件,QCL用户必须设计和制造定制的微光学器件,以有效地收集,准直和聚焦QCL发射。在本文中,我们报告了为发射波长为8.77μm的中红外Fabry-Perot QCL设计的锗非球面准直和聚焦光学器件的设计,制造和表征。使用单点金刚石车削设计和制造了分别具有0.85和0.20的数值孔径(NA)的定制非球面准直和聚焦透镜。对中红外波长的透射波前误差的测量表明准直透镜和聚焦透镜的衍射极限性能分别为Strehl比> 0.94和> 0.99。使用由这些透镜组成的共焦光学系统,分别测量了Fabry-Perot QCL的快轴和慢轴的光束传播品质因数(M〜2)为1.8和1.2。

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