论文标题

Simons天文台:超材料微波吸收器(MMA)及其低温应用

The Simons Observatory: Metamaterial Microwave Absorber (MMA) and its Cryogenic Applications

论文作者

Xu, Zhilei, Chesmore, Grace E., Adachi, Shunsuke, Ali, Aamir M., Bazarko, Andrew, Coppi, Gabriele, Devlin, Mark, Devlin, Tom, Dicker, Simon R., Gallardo, Patricio A., Golec, Joseph E., Gudmundsson, Jon E., Harrington, Kathleen, Hattori, Makoto, Kofman, Anna, Kiuchi, Kenji, Kusaka, Akito, Limon, Michele, Matsuda, Frederick, McMahon, Jeff, Nati, Federico, Niemack, Michael D., Sutariya, Shreya, Suzuki, Aritoki, Teply, Grant P., Thornton, Robert J., Wollack, Edward J., Zannoni, Mario, Zhu, Ningfeng

论文摘要

在毫米波长下控制流浪光需要特殊的光学设计和吸收材料的选择,这些材料应与低温工作环境兼容。尽管存在多种吸收材料,但这些吸收材料通常表现出很高的折射率,并在吸收前反射/散布了大量的光。对于许多较低的索引材料,例如商业微波吸收器,它们在低温环境中的应用都具有挑战性。在本文中,我们提出了一种控制杂散光的新工具:超材料微波吸收器瓷砖。这些瓷砖包含一个超材料的外层层,该层近似于有损梯度指数抗反射涂层。它们是通过注射造型市售的碳载聚氨酯(25 \%的质量)来制造的。注射成型技术可以低成本使大规模生产。提出了这些瓷砖的设计,以及对1 K的热测试。室温光学测量结果验证了它们对反射率的控制率低于1 \%,最高为65 $ \ circ $ circ $发射率,以及对0.01 \%以下的广角散射的控制。在不同温度下还测量了瓷砖中使用的大量碳载体材料的介电性能,证实该材料将相似的介电性能保持在3 k。

Controlling stray light at millimeter wavelengths requires special optical design and selection of absorptive materials that should be compatible with cryogenic operating environments. While a wide selection of absorptive materials exists, these typically exhibit high indices of refraction and reflect/scatter a significant fraction of light before absorption. For many lower index materials such as commercial microwave absorbers, their applications in cryogenic environments are challenging. In this paper, we present a new tool to control stray light: metamaterial microwave absorber tiles. These tiles comprise an outer metamaterial layer that approximates a lossy gradient index anti-reflection coating. They are fabricated via injection molding commercially available carbon-loaded polyurethane (25\% by mass). The injection molding technology enables mass production at low cost. The design of these tiles is presented, along with thermal tests to 1 K. Room temperature optical measurements verify their control of reflectance to less than 1\% up to 65$\circ$ angles of incidence, and control of wide angle scattering below 0.01\%. The dielectric properties of the bulk carbon-loaded material used in the tiles is also measured at different temperatures, confirming that the material maintains similar dielectric properties down to 3 K.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源