论文标题

开发基于环氧树脂的毫米吸收器,具有膨胀的多层细胞和碳黑色

Development of epoxy-based millimeter absorber with expanded polystyrenes and carbon black

论文作者

Inoue, Yuki, Hasegawa, Masaya, Hazumi, Masashi, Takada, Suguru, Tomaru, Takayuki

论文摘要

我们最近开发并表征了毫米波长的吸收剂。为了有效吸收毫米波,我们需要开发低反射和高吸收材料。为了满足这些要求,我们试图在环氧树脂中添加聚苯乙烯珠,以在吸收器中进行多散射。聚苯乙烯珠的典型直径对应于吸收器中光子多散射的MIE散射尺度。吸收剂由环氧树脂,碳黑色和膨胀的聚苯乙烯珠组成。扩展的聚苯乙烯珠的典型尺寸与MIE散射的横截面峰一致,以增加吸收剂中的平均自由路径。通过应用此效果,我们成功地提高了吸收剂的性能。在本文中,我们测量了环氧树脂的光学特性,以计算MIE散射效果。根据计算结果,我们通过更改吸收材料的比率开发了8种样品。为了比较8个样品,我们表征了吸收剂以毫米长的反射率和透射率。具有优化参数的2 mM厚度样品的测得的反射率和透射率小于20%和10%。我们还测量了亚毫米波长中的透射率。测得的透射率小于1%。可以为任何形状(例如芯片和锥体形状)修改吸收器的形状。通过使用此吸收器,我们可以使用任何形状来缓解毫米波望远镜的杂散光。

We recently developed and characterized an absorber for millimeter wavelengths. To absorb the millimeter wave efficiently, we need to develop the low reflection and high absorption material. To meet these requirements, we tried to add polystyrene beads in the epoxy for multi-scattering in the absorber. The typical diameter of polystyrene beads corresponds to the scale of Mie scattering for the multi-scattering of photons in the absorber. The absorber consists of epoxy, carbon black, and expanded polystyrene beads. The typical size of the expanded polystyrene beads is consistent with the peak of cross-section of Mie scattering to increase the mean free path in the absorber. By applying this effect, we succeeded in improving the performance of the absorber. In this paper, we measured the optical property of epoxy for the calculation of the Mie scattering effect. Based on the calculation result, we developed the 8 types samples by changing the ratio of absorber material. To compare 8 samples, we characterized the reflectance and transmittance of the absorber in millimeter length. The measured reflectance and transmittance of 2 mm thickness sample with optimized parameter are less than 20% and 10%. We also measured the transmittance in sub-millimeter wavelength. The measured transmittance is less than 1%. The shape of absorber can be modified for any shape, such as chip and pyramidal shapes. By using this absorber, we can apply for the mitigation of stray light of millimeter wave telescope with any shapes.

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