论文标题

波导型多路复用器,用于使用毫米波光谱计对大气分子进行多行观察

Waveguide-Type Multiplexer for Multiline Observation of Atmospheric Molecules using Millimeter-Wave Spectroradiometer

论文作者

Nakajima, Taku, Haratani, Kohei, Mizuno, Akira, Suzuki, Kazuji, Kojima, Takafumi, Uzawa, Yoshinori, Asayama, Shin'ichiro, Watanabe, Issei

论文摘要

为了更好地了解中间气氛中臭氧丰度的变化机制,与臭氧耗竭有关的同时监测臭氧和其他次要分子物种是最基本和关键的方法。开发了波导型多路复用器,用于毫米波光谱计的观察频率范围的扩展,以同时观察多个分子光谱线。提出的多路复用器包含级联的四阶段侧带分离过滤电路。波导电路是基于电磁分析设计的,阶段1-4的传球频带为243-251 GHz,227-235 GHz,197-205 GHz和181-189 GHz。使用矢量网络分析仪测量了多路复用器的插入和返回损失,每个观察频段均定义明确,并适当地指定了带宽。此外,测量了使用超导搅拌器在4 K处的接收器噪声温度和图像排斥比(IRR)。结果,与仅混合器相比,由于多路复用器的接收器噪声增加可以归因于多路复用器中波导电路的传输损失。在每个观察带的中心,IRR高于25 dB。这表明波导类型的多路复用器可以实现高稳定的IRR性能,以实现侧带信号的分离。

In order to better understand the variation mechanism of ozone abundance in the middle atmosphere, the simultaneous monitoring of ozone and other minor molecular species, which are related to ozone depletion, is the most fundamental and critical method. A waveguide-type multiplexer was developed for the expansion of the observation frequency range of a millimeter-wave spectroradiometer, for the simultaneous observation of multiple molecular spectral lines. The proposed multiplexer contains a cascaded four-stage sideband-separating filter circuit. The waveguide circuit was designed based on electromagnetic analysis, and the pass frequency bands of Stages 1-4 were 243-251 GHz, 227-235 GHz, 197-205 GHz, and 181-189 GHz. The insertion and return losses of the multiplexer were measured using vector network analyzers, each observation band was well-defined, and the bandwidths were appropriately specified. Moreover, the receiver noise temperature and the image rejection ratio (IRR) using the superconducting mixer at 4 K were measured. As a result, the increase in receiver noise due to the multiplexer compared with that of only the mixer can be attributed to the transmission loss of the waveguide circuit in the multiplexer. The IRRs were higher than 25 dB at the center of each observation band. This indicates that a high and stable IRR performance can be achieved by the waveguide-type multiplexer for the separation of sideband signals.

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