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首页> 外文期刊>AIP Advances >Broadband antireflection coatings adopting 3-layer homogeneous dielectric materials for birefrigent sapphire waveplate in millimeter-wave band
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Broadband antireflection coatings adopting 3-layer homogeneous dielectric materials for birefrigent sapphire waveplate in millimeter-wave band

机译:毫米波波段双折射蓝宝石波片采用三层均质介电材料的宽带减反射膜

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The Design, fabrication, and measurement of a broadband 3-layer antireflection (AR) coating on birefrigent sapphire waveplate in the cryogenic environment are reported in this paper. The proposed ARC design laminates 3 different uniform dielectric materials (n=1.25, 1.81, and 2.45) and bonds them together with the sapphire waveplate in the vacuum heating oven in the cleanroom. The transmission of coated waveplate in both fast and slow axis are greatly improved from averagely around 55.8% to 94.8% and from 61.2% to 98.8% in two axis across from 105 GHz to 300 GHz (the relative bandwidth approaching 100%), meanwhile the ARC also has the merit of incident angle robustness for the homogeneous property of the dielectrics. The experimental results are in excellent agreement with theoretical calculations after the curve fitting technique. The proposed design method of ARC reported in this paper provides us a novel and straightforward method to design the recipe of ARC using conventional dielectric materials, which could be potentially applied for various waveplates and other devices made of any type of material.
机译:本文报道了在低温环境下双折射蓝宝石波片上宽带三层抗反射(AR)涂层的设计,制造和测量。提出的ARC设计将3种不同的均匀介电材料(n = 1.25、1.81和2.45)层压在一起,并在无尘室的真空加热炉中将它们与蓝宝石波片粘结在一起。在105 GHz至300 GHz的两个轴上,镀膜波片在快轴和慢轴上的透射率均从55.8%左右平均提高到94.8%,从61.2%到98.8%大大提高(相对带宽接近100%),对于电介质的均匀特性,ARC还具有入射角坚固性的优点。曲线拟合后的实验结果与理论计算吻合良好。本文报道的ARC设计方法为我们提供了一种新颖而直接的方法,可以使用传统的介电材料来设计ARC的配方,该方法可以潜在地应用于各种波片和由任何类型的材料制成的其他设备。

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