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首页> 外文期刊>The Astrophysical journal >FAR-lNFRARED STUDY OF IRAS 00494+5617 AND IRAS 05327--0457
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FAR-lNFRARED STUDY OF IRAS 00494+5617 AND IRAS 05327--0457

机译:IRAS 00494 + 5617和IRAS 05327--0457的远红外研究

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High angular resolution far-infrared observations at 143 and 185 pm, using the Tata Institute of Fun- damental Research 1 m balloon-borne telescope, are presented for two Galactic star-forming complexes associated with IRAS 00494+ 5617 and IRAS 05327--0457. The latter map also reveals the cold dust in OMC-3. Both these regions are illuminated at the edges by high-mass stars with substantial UV flux. The HIRES (High-Resolution processing using Maximum Correlation Method) processed IRAS maps at 12, 25, 60, and 100 pm have also been presented for comparison. The present study is aimed at quantify- ing the role of the nearby stars vis-a-vis embedded young stellar objects in the overall heating of these sources. Based on the FIR observations at l43 and l85 pm carried out simultaneously with almost iden- tical angular resolution, reliable dust temperature and optical depth maps have been generated for the brighter regions of these sources. Radiative transfer modeling in spherical geometry has been carried out to extract physical parameters of these sources by considering the observational constraints, such as spectral energy distribution, angular size at different wavelengths, dust temperature distribution, etc. It is concluded that for both IRAS 00494+ 5617 and IRAS 05327--0457, the embedded energy sources play the major role in heating them with finite contribution from the nearby stars. The best-fit model for IRAS 00494+56l7 is consistent with a simple two-phase clump-interclump picture with ~5/100 volume filling factor (of clumps) and a density contrast of se 80.
机译:使用塔塔基础研究学院的1 m气球式望远镜,在143和185 pm进行了高角度分辨率的远红外观测,观测了两个与IRAS 00494+ 5617和IRAS 05327--0457相关的银河系恒星形成复合体。后一幅图还显示了OMC-3中的冷尘。这两个区域的边缘均被具有大量紫外线通量的高质量恒星照亮。还提供了HIRES(使用最大相关方法进行的高分辨率处理)在12、25、60和100 pm处处理的IRAS映射以进行比较。本研究旨在量化附近恒星相对于嵌入的年轻恒星物体在这些源的整体加热中的作用。基于在几乎相同的角分辨率下同时进行的FIR观测(分别在143和185 pm),已为这些源的较亮区域生成了可靠的粉尘温度和光学深度图。考虑到观测条件,例如光谱能量分布,不同波长的角度大小,粉尘温度分布等,已经进行了球形几何结构的辐射传递建模来提取这些源的物理参数。结论是对于IRAS 00494+ 5617和IRAS 05327--0457,嵌入式能源在加热它们的过程中起着主要作用,附近恒星的贡献有限。 IRAS 00494 + 56l7的最佳拟合模型与简单的两相块间图像相吻合,其填充率约为5/100(块),密度对比度为80。

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