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Magnetic Field Structure in Molecular Clouds by Polarization Measurements

机译:通过极化测量分子云中的磁场结构

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We report on a program to delineate magnetic field structure inside molecular clouds by optical and infrared polarization observations. An ordered magnetic field inside a dense cloud may efficiently align the spinning dust grains to cause a detectable level of optical and nearinfrared polarization of otherwise unpolarized background starlight due to dichroic extinction. The near-infrared polarization data were taken by SIRPOL mounted on IRSF in SAAO. Here we present the SIRPOL results in RCW 57, for which the magnetic field is oriented along the cloud filaments, and in Carina Nebula, for which no intrinsic polarization is detected in the turbulent environment. We further describe TRIPOL, a compact and efficient polarimer to acquire polarized images simultaneously at g', r', and i' bands, which is recently developed at Nagoya University for adaption to small-aperture telescopes. We show how optical observations probe the translucent outer parts of a cloud, and when combining with infrared observations probing the dense parts, and with millimeter and submillimeter observations to sutdy the central embedded protostar, if there is one, would yield the magnetic field structure on different length scales in the star-formation process.
机译:我们通过光学和红外偏振观察报告了在分子云内描绘磁场结构的程序。密集云内的有序磁场可以有效地对准旋转粉尘颗粒,导致其他因子未偏压的偏光和接近过滤器的可检测水平,因为二向色灭火。近红外偏振数据由Saao上安装在IRSF上的Sirpol。在这里,我们介绍了RCW 57中的Sirpol导致,其中磁场沿着云丝定向,并且在Cari​​na星云中,在湍流环境中没有检测到内在极化。我们进一步描述了Trigol,一种紧凑型且高效的偏振器,以在G',R'和I'频段上同时获取偏振图像,该频段最近在名古屋大学开发的小孔径望远镜。我们展示了光学观测如何探测云的半透明外部部件,以及与探测密集部件的红外观察组合时,并且用毫米和淹没的观察结果来解剖到中央嵌入式矩位,如果有一个,则会产生磁场结构星形形成过程中的不同长度尺度。

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