Nagai Makoto, Ezaki Shohei, Sakai Ryo, Kaneko Keiko, Imada Hiroaki, Kojima Takafumi, Shan Wenlei, Uzawa Yoshinori, Asayama Shinichiro
Appl Opt. 2023 Aug 10;62(23):6287-6296. doi: 10.1364/AO.496027.
For millimeter and submillimeter-wave astronomy, it is highly desirable to have vacuum windows within the receiver cryostat that exhibit low reflection, low loss, and a wide bandpass. The use of antireflective (AR) sub-wavelength structures (SWSs) on substrates has expanded the possibilities for creating new vacuum windows. Recently, a novel method of fabricating AR SWS on a silicon-on-insulator wafer has been proposed, and a vacuum window with a two-layer AR SWS has been developed for use with the Atacama Submillimeter Telescope Experiment Band 10 receiver. To thoroughly assess the characteristics of the silicon window sample, we conducted transmittance measurements using terahertz time-domain spectroscopy, and noise and beam measurements using an Atacama Large Millimeter/submillimeter Array (ALMA) Band 10 receiver. We found that the silicon window sample exhibits characteristics comparable to the quartz window of the ALMA Band 10 receiver. The result strongly encourages applications of AR silicon windows in receivers with wider bandwidths.
对于毫米波和亚毫米波天文学而言,非常希望在接收器低温恒温器内拥有具有低反射、低损耗和宽带通的真空窗口。在衬底上使用抗反射(AR)亚波长结构(SWS)扩大了制造新型真空窗口的可能性。最近,有人提出了一种在绝缘体上硅晶圆上制造AR SWS的新方法,并开发了一种带有两层AR SWS的真空窗口,用于阿塔卡马亚毫米波望远镜实验波段10接收器。为了全面评估硅窗口样品的特性,我们使用太赫兹时域光谱进行了透射率测量,并使用阿塔卡马大型毫米波/亚毫米波阵列(ALMA)波段10接收器进行了噪声和波束测量。我们发现该硅窗口样品展现出与ALMA波段10接收器的石英窗口相当的特性。这一结果有力地推动了AR硅窗口在更宽带宽接收器中的应用。