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Development of instrumentation for differential spectroscopic measurements at millimeter wavelengths

机译:少数波长差分光谱测量仪表的开发

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The study of the spectral-spatial anisotropy of the high-latitude mm-wave sky is a powerful tool of cosmology. It can be used to provide deep insight in the Sunyaev-Zeldovich (SZ) effect, the Cosmic Infrared Background, the anisotropy of the CMB, using the spectral dimension to provide substantially increased information with respect to what is achievable by means of standard multiband photometry. Here we focus on spectral measurements of the SZ effect. Large mm-wave telescopes are now routinely mapping photometrically the SZ effect in a number of clusters, estimating the comptonisation parameter and using them as cosmological probes. Low-resolution spectroscopic measurements of the SZ effect would be very effective in removing the degeneracy between parameters inevitable in photometric measurements. We describe a real-world implementation of this measurement strategy, based on an imaging, efficient, differential Fourier transform spectrometer (FTS). The instrument is based on a Martin-Puplett interferometer (MPI) configuration. We combined two MPIs working synchronously to use the entire input power. In our implementation the observed sky field is divided into two halves along the meridian. Each half-field corresponds to one of the two input ports of the MPI. Each detector in the FTS focal planes measures the difference in brightness between two sky pixels, symmetrically located with respect to the meridian. Exploiting the high common mode rejection of the MPI, tiny sky brightness gradients embedded in an overwhelming isotropic background might be measured. We investigate experimentally the common-mode rejection achievable in the MPI at mm wavelengths, and discuss the use of such an instrument to measure the spectrum of cosmic microwave background (CMB) anisotropy and the SZ effect.
机译:高纬度MM波天空的光谱空间各向异性的研究是宇宙学的强大工具。它可用于在Sunyaev-Zeldovich(SZ)效果中提供深度洞察力,使用光谱尺寸来提供COSMIC红外背景,CMB的各向异性,以通过标准多频带测光法提供基本上增加的信息基本上增加的信息。在这里,我们专注于SZ效应的光谱测量。现在,大MM波望远镜常规地将基本的SZ效应映射到许多簇中,估计COPPTONISIZATION参数并使用它们作为宇宙学探测器。 Sz效应的低分辨率光谱测量对于在光度测量中不可避免的参数之间的退化性非常有效。基于成像,高效,差分傅里叶变换光谱仪(FTS),我们描述了这种测量策略的真实实现。该仪器基于Martin-Puplett干涉仪(MPI)配置。我们组合两个MPI同步工作以使用整个输入功率。在我们的实施中,观察到的天空场沿着经络分为两半。每个半场对应于MPI的两个输入端口之一。 FTS焦平面中的每个检测器测量两个天空像素之间的亮度的差异,对称地位于子午线。利用MPI的高共同模式抑制,可以测量嵌入在压倒性各向同性背景中的微小天空亮度梯度。我们在实验上调查MM波长可实现的共模抑制,并讨论这种仪器测量宇宙微波背景(CMB)各向异性和SZ效应的频谱。

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