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Design and Fabrication of Far-Ultraviolet Reflective Broadband Filter Based on Dielectric Materials

机译:基于介电材料的远紫外线反射宽带滤波器的设计与制造

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摘要

In the far-ultraviolet (UV) region, optical materials are dispersive and absorbing. The previous successful design method utilized in the visible band should be re-examined. We report on the design and fabrication of a far-UV reflective broadband filter based on dielectric materials lanthanum fluoride (LaF_(3)) and magnesium fluoride (MgF_(2)). Extended bandwidth technology is utilized in designing this filter. The obtained filter has a high reflectance in the working wavelength range of 140–180?nm, meanwhile, with good suppression in shorter and longer wavelength regions. In 2016, this filter was employed in a wide-angle aurora imager (WAAI) installed in the Feng Yun III satellite that will be launched in China.
机译:在远紫外(UV)区域中,光学材料是分散和吸收的。 应重新检查可见频带中使用的先前成功的设计方法。 我们报告了基于介电材料氟化镧(LAF_(3))和氟化镁(MGF_(2))的远UV反射宽带滤波器的设计和制造。 扩展带宽技术在设计该过滤器时使用。 所获得的滤光器在140-180Ω·Nm的工作波长范围内具有高反射率,同时具有较短的波长区域的抑制良好。 2016年,该过滤器采用广泛的Aurora Imager(Waai)安装在冯云III卫星中,该卫星将在中国推出。

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