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Technology of infrared radiation polarizer

机译:红外辐射起偏器技术

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Among the various characteristics of infrared radiation, the degree of polarization is not often used in radiation analysis. The main reason is that polarization is less informative characteristic compared to others for most practical tasks. Also obtaining polarized radiation in infrared spectrum is relative complex and expensive act. In some cases, such as remote sensing, the improvement of spatial, radiometric and spectral resolution approaches it's physical limit. It becomes relevant to obtain additional information of a different nature, such as polarization information. Modern infrared radiation polarizers based on diffraction gratings are quite expensive. The article explores the possibility of creating infrared polarizers based on a plane-parallel plate, to which radiation falls at an Brewster angle. It is shown that the polarizer operating on transmittance will be more efficient than reflecting radiation polarizer, since it does not deviate the optical axis by a significant angle. Such a polarizer provides a polarization degree of 90% and a transmittance of about 50%.
机译:在红外辐射的各种特征中,偏振度通常不用于辐射分析。主要原因是,在大多数实际任务中,极化与其他极化相比,信息量较少。还获得红外光谱中的偏振辐射是相对复杂且昂贵的行为。在某些情况下,例如遥感,空间,辐射度和光谱分辨率的提高接近其物理极限。获得不同性质的附加信息(例如极化信息)变得很重要。基于衍射光栅的现代红外辐射偏振器非常昂贵。本文探讨了基于平面平行板创建红外偏振器的可能性,辐射以布鲁斯特角落在该平面偏振板上。示出了以透射率工作的偏振器将比反射辐射偏振器更有效,因为它不会使光轴偏离很大的角度。这种偏振器提供90%的偏振度和约50%的透射率。

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