红外天文卫星图下渐近巨星支星附近两个远红外空腔尘埃特性的研究

M. Tiwari, S. P. Gautam, A. Silwal, S. Subedi, A. Paudel, A. K. Jha
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引用次数: 4

摘要

位于R.A. (J2000): 16h 33m 57.25s & dec (J2000): -37d 47m 043 s的FIC16-37(尺寸约4.79 pc x 3.06 pc)和位于R.A. (J2000): 12h 52m 50.08s & dec (J2000)的FIC12-58(尺寸约22.54 pc x 14.84 pc)的核心区域的尘埃色温、尘埃质量、视觉消光和普朗克函数的分布:利用红外天文卫星(IRAS)巡天,研究了位于- 100 ~ + 100星系面附近的渐近巨星分支(AGB)恒星AGB15-38 (R.A (J2000): 15h 37m 40.74s & dec (J2000): -38d 20m 24.6s)和AGB12-57 (R.A (J2000): 12h 56m 38.50 & dec (J2000): -57d 54m 34.70s)。FIC16-37和FIC12-58的尘色温分别在23.95±0.25 K ~ 23.44±0.27 K和24.88±0.27 K ~ 23.63±0.98 K之间,差异约为0.5 K和1 K。尘色温偏差较小,表明尘色温与密度分布呈对称分布。空腔FIC16-37和FIC12-58的总质量分别为0.053 M☉和0.78 M☉。发现两个空腔的质量分布轮廓图符合宇宙学原理,表明尘埃质量分布均匀且各向同性。温度与视觉消光曲线呈负相关,表明温度越高,视觉消光越低,反之亦然。普朗克函数沿两个空腔主径和小径的分布不均匀,表明尘埃粒子通过振荡达到动力平衡。它进一步表明两个空腔附近的压力驱动事件的作用,并表明尘埃颗粒沿着直径不处于热平衡状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Dust Properties of two Far Infrared Cavities near by Asymptotic Giant Branch stars under Infrared Astronomical Satellite Maps
The physical properties such as dust color temperature, dust mass, visual extinction, and Planck function with their distribution in the core region of two far-infrared cavities, namely FIC16-37 (size ~ 4.79 pc x 3.06 pc) located at R.A. (J2000): 16h 33m 57.25s & Dec. (J2000): -37d 47m 04.3s, and FIC12-58 (size ~ 22.54 pc x 14.84 pc) located at R.A. (J2000): 12h 52m 50.08s & Dec. (J2000): -58d 08m 55.02s, found within a galactic plane -10o  to +10o  nearby Asymptotic Giant Branch (AGB) stars namely AGB15-38 (R.A. (J2000): 15h 37m 40.74s & Dec. (J2000): -38d 20m 24.6s), and AGB12-57 (R.A (J2000): 12h 56m 38.50s & Dec. (J2000): -57d 54m 34.70s), respectively were studied using Infrared Astronomical Satellite (IRAS) survey. The dust color temperature was found to lie in the range of 23.95 ± 0.25 K to 23.44 ± 0.27 K with an offset about 0.5 K for FIC16-37, and 24.88 ± 0.27 K to 23.63 ± 0.98 K with an offset about 1 K for FIC12-58. The low offset in the dust color temperature indicated the symmetric distribution of density and temperature. The total mass of the cavities FIC16-37 and FIC12-58 were found to be 0.053 M☉ and 0.78 M☉, respectively. The contour plots of mass distribution of both of the cavities was found to follow the cosmological principle, suggesting the homogeneous and isotropic distribution of dust masses. The plot between temperature and visual extinction showed a negative correlation, suggesting that higher temperature has lower visual extinction and vice-versa. The distribution of Planck function along major and minor diameters of both of the cavities was found to be non-uniform, indicating oscillation of dust particles to get dynamical equilibrium. It further suggested the role of pressure-driven events nearby both cavities and suggested that dust particles are not in thermal equilibrium along the diameters.
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