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首页> 外文期刊>Infrared physics and technology >Evaporation of uniform antireflection coatings on hemispherical lenses to enhance infrared antenna gain
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Evaporation of uniform antireflection coatings on hemispherical lenses to enhance infrared antenna gain

机译:在半球形透镜上蒸发均匀的增透膜,以增强红外天线的增益

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摘要

Infrared dipole-coupled bolometers receive radiation more efficiently when illuminated through a high permittivity, antireflection (AR) coated, hemispherical immersion lens. To maintain the enhanced responsivity for all illumination angles, the AR coating must be uniform over the hemispherical surface. An evaporation method for depositing a uniform AR coating on the hemispherical surface is presented. The lens is tilted relative to the source, which can be either electron-beam or thermal, and rotated throughout the deposition. Evaporation at an angle of 70 yields a uniform film with less than 10% thickness variation over a 120 full angle of the hemispherical surface. A theoretical model is developed and compared to profilometer measurements. In all cases, there is general agreement between theory and measurement. A single dipole is fabricated onto the flat surface of an AR-coated germanium immersion lens and the responsivity is measured for both substrate-side and air-side illumination. With a zinc sulfide (ZnS) single-layer AR coating, substrate-side illumination yields a broadside antenna response 49 ± 2.7 times greater than air-side illumination.
机译:当通过高介电常数,防反射(AR)涂层的半球形浸没透镜进行照明时,红外偶极耦合测辐射热计更有效地接收辐射。为了在所有照明角度下保持较高的响应度,AR涂层在半球表面必须均匀。提出了一种在半球形表面上沉积均匀的增透膜的蒸发方法。透镜相对于源(可以是电子束或热源)倾斜,并在整个沉积过程中旋转。以70°的角度蒸发可得到均匀的薄膜,在半球形表面的120个完整角度上厚度变化小于10%。建立了理论模型,并将其与轮廓仪测量结果进行了比较。在所有情况下,理论和测量之间都存在普遍共识。将单个偶极子制造到镀有AR的锗浸没透镜的平面上,并测量基板侧和空气侧照明的响应度。使用硫化锌(ZnS)单层增透膜,基板侧照明产生的宽边天线响应比空气侧照明大49±2.7倍。

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