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First Near-infrared Imaging Polarimetry of Young Stellar Objects in the Circinus Molecular Cloud

机译:循环分子云中的幼颗恒星物体的首次近红外成像偏振偏振物

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摘要

We present the results of near-infrared (NIR) linear imaging polarimetry in the J, H, and K-s bands of the low-mass star cluster-forming region in the Circinus Molecular Cloud Complex. Using aperture polarimetry of point-like sources, positive detection of 314, 421, and 164 sources in the J, H, and Ks bands, respectively, was determined from among 749 sources whose photometric magnitudes were measured. For the source classification of the 133 point-like sources whose polarization could be measured in all 3 bands, a color-color diagram was used. While most of the NIR polarizations of point-like sources are well-aligned and can be explained by dichroic polarization produced by aligned interstellar dust grains in the cloud, 123 highly polarized sources have also been identified with some criteria. The projected direction on the sky of the magnetic field in the Cir-MMS region is indicated by the mean polarization position angles (70 degrees) of the point-like sources in the observed region, corresponding to approximately 1.6 x 1.6 pc(2). In addition, the magnetic field direction is compared with the outflow orientations associated with Infrared Astronomy Satellite sources, in which two sources were found to be aligned with each other and one source was not. We also show prominent polarization nebulosities over the Cir-MMS region for the first time. Our polarization data have revealed one clear infrared reflection nebula (IRN) and several candidate IRNe in the Cir-MMS field. In addition, the illuminating sources of the IRNe are identified with near-and mid-infrared sources.
机译:我们介绍了循环分子云复合物中的低质量星形簇形成区域的J,H和K-S带中的近红外(NIR)线性成像偏振偏振物的结果。使用点状源的孔径偏振偏振物,分别从测量光度幅度的749个源中测定J,H和KS带中的314,421和164个源的阳性检测。对于可以在所有3个频带中测量的极化可以测量的133点状源的源分类,使用颜色图。虽然点状源的大多数NIR偏振是良好的对齐,并且可以通过通过云中的对齐的星形尘埃颗粒产生的二色性极化来解释,也有123个高度极化的来源,并用一些标准鉴定出一些标准。 CIR-MMS区域中的磁场的天空上的投影方向由观察区域中的点状源的平均偏振位置角(70度)表示,对应于大约1.6×1.6pc(2)。另外,将磁场方向与与红外天文卫星源相关联的流出方向进行比较,其中发现两个源彼此对齐,并且一个源不是。我们也首次在CIR-MMS区域上显示出突出的极化雾峰。我们的极化数据揭示了一个清晰的红外反射星云(IRN)和CIR-MMS领域的几个候选Irne。此外,IRNE的照明来源用近红外来源识别。

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