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Efficient dielectric metasurface collimating lenses for mid-infrared quantum cascade lasers

机译:适用于中红外量子级联激光器的高效介电超表面准直透镜

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摘要

Light emitted from single-mode semiconductor lasers generally has large divergence angles, and high numerical aperture lenses are required for beam collimation. Visible and near infrared lasers are collimated using aspheric glass or plastic lenses, yet collimation of mid-infrared quantum cascade lasers typically requires more costly aspheric lenses made of germanium, chalcogenide compounds, or other infrared-transparent materials. Here we report mid-infrared dielectric metasurface flat lenses that efficiently collimate the output beam of single-mode quantum cascade lasers. The metasurface lenses are composed of amorphous silicon posts on a flat sapphire substrate and can be fabricated at low cost using a single step conventional UV binary lithography. Mid-infrared radiation from a 4.8 μm distributed-feedback quantum cascade laser is collimated using a polarization insensitive metasurface lens with 0.86 numerical aperture and 79% transmission efficiency. The collimated beam has a half divergence angle of 0.36° and beam quality factor of M^2=1.02.
机译:从单模半导体激光器发射的光通常具有大的发散角,并且光束准直需要高数值孔径的透镜。可见光和近红外激光器使用非球面玻璃或塑料透镜进行准直,但是中红外量子级联激光器的准直通常需要由锗,硫族化物或其他红外透明材料制成的非球面透镜。在这里,我们报告中红外电介质超表面平面透镜,该透镜可有效地准直单模量子级联激光器的输出光束。超表面透镜由在平坦蓝宝石衬底上的非晶硅柱组成,可以使用一步常规的紫外线二元光刻技术以低成本制造。使用具有0.86数值孔径和79%传输效率的偏振不敏感型超颖表面透镜对来自4.8μm分布式反馈量子级联激光器的中红外辐射进行准直。准直光束的半发散角为0.36°,光束质量因数M ^ 2 = 1.02。

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