CMBPol任务概念研究:前景科学知识与展望

A. Fraisse, Jack Brown, G. Dobler, J. Dotson, B. Draine, P. Frisch, M. Haverkorn, C. Hirata, R. Jansson, A. Lazarian, A. M. Magalhães, A. Waelkens, M. Wolleben
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引用次数: 12

摘要

我们报告了我们对银河系前景的了解,以及旨在探测原始b模式信号(CMBPol)的CMB卫星任务将如何有助于改进它。我们回顾了用于约束星系磁场结构的观测和分析技术,磁场的存在是导致星系发射极化的原因。虽然我们目前对磁化星际介质的理解有些有限,但预计到CMBPol飞行时,我们对其性质的了解将有显著改善。由于高分辨率和高灵敏度的仪器在30 GHz和850 GHz之间的频率观测整个天空,CMBPol不仅可以通过观测银河系的同步辐射来改善这幅图像,而且还有助于约束尘埃模型。在CMBPol的最高频率频道中,星际尘埃的极化发射确实比任何其他信号都要占优势。因此,在这些波长上的观测,加上对星光偏振的地面研究,将使我们能够提高对尘埃特性的理解,以及对尘埃颗粒与银河系磁场对齐的机制的理解。CMBPol还将为目前尚未完全理解的观测结果提供新的线索。对异常尘埃和同步辐射的形态学研究确实会限制它们的性质和特性,而寻找日球尘埃辐射的波动将考验我们对日球周围星际介质的理解。最后,为了最大限度地从CMBPol对CMB透镜的观测中提取宇宙学约束,获取更多关于星系外源特性的信息将是必要的。(简略)
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CMBPol Mission Concept Study: Foreground Science Knowledge and Prospects
We report on our knowledge of Galactic foregrounds, as well as on how a CMB satellite mission aiming at detecting a primordial B-mode signal (CMBPol) will contribute to improving it. We review the observational and analysis techniques used to constrain the structure of the Galactic magnetic field, whose presence is responsible for the polarization of Galactic emissions. Although our current understanding of the magnetized interstellar medium is somewhat limited, dramatic improvements in our knowledge of its properties are expected by the time CMBPol flies. Thanks to high resolution and high sensitivity instruments observing the whole sky at frequencies between 30 GHz and 850 GHz, CMBPol will not only improve this picture by observing the synchrotron emission from our galaxy, but also help constrain dust models. Polarized emission from interstellar dust indeed dominates over any other signal in CMBPol's highest frequency channels. Observations at these wavelengths, combined with ground-based studies of starlight polarization, will therefore enable us to improve our understanding of dust properties and of the mechanism(s) responsible for the alignment of dust grains with the Galactic magnetic field. CMBPol will also shed new light on observations that are presently not well understood. Morphological studies of anomalous dust and synchrotron emissions will indeed constrain their natures and properties, while searching for fluctuations in the emission from heliospheric dust will test our understanding of the circumheliospheric interstellar medium. Finally, acquiring more information on the properties of extra-Galactic sources will be necessary in order to maximize the cosmological constraints extracted from CMBPol's observations of CMB lensing. (abridged)
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