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Free-space infrared Mach-Zehnder interferometer for relative index of refraction measurement of gradient index optics

机译:自由空间红外Mach-Zehnder干涉仪,用于测量梯度折射率光学器件的相对折射率

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摘要

The availability of more affordable, high resolution, infrared (IR) detector arrays has opened up the need for a larger set of IR materials. This has created a renewed interest in chalcogenide glasses as their transmission spans from 1 to 14 μm. The Naval Research Laboratory has shown that the chalcogenide glasses can be diffused to make gradient index (GRIN) lenses. GRIN materials are interesting because they can have unique dispersion properties that do not exist in the currently discovered homogeneous materials, a key parameter for optical designers. When fabricating a GRIN material, the ability to test and characterize its properties is essential. This has prompted the need and development of an IR Mach-Zehnder interferometer for relative index of refraction measurements of GRIN materials. These same, more affordable IR detector arrays have also allowed for what was commonly done in the visible to be developed in the IR. Now, two-dimensional change in refractive index can be measured without scanning, and the fringe density becomes less of an issue in the IR, allowing for larger changes in refractive index over a small area to be measured. An axial chalcogenide GRIN with An of 0.13 was measured at a wavelength of 3.39 urn.
机译:更加实惠的高分辨率红外(IR)检测器阵列的出现,打开了对更多红外材料的需求。硫族化物玻璃的透射范围从1到14μm,这引起了人们的新兴趣。海军研究实验室表明,硫属化物玻璃可以扩散以制成梯度折射率(GRIN)镜片。 GRIN材料之所以有趣,是因为它们具有独特的色散特性,这在当前发现的均质材料中是不存在的,光学材料是光学设计人员的关键参数。在制造GRIN材料时,测试和表征其性能的能力至关重要。这促使需要和开发用于GRIN材料的相对折射率测量的IR Mach-Zehnder干涉仪。这些相同的,价格更便宜的红外探测器阵列也允许在红外中开发可见光中通常要做的事情。现在,无需扫描即可测量折射率的二维变化,并且条纹密度在IR中变得不再重要,从而允许在较小的待测区域上实现较大的折射率变化。在3.39um的波长下测量了An为0.13的轴向硫属化物GRIN。

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