The Gas-to-Dust Relation in the Dark Cloud L1523—Observational Evidence for CO Gas Depletion

Hyo-Ryung Kim, Bong-Gyu Kim, J. Jung
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引用次数: 1

Abstract

Correlation between gas and dust column density has been studied for the dark globule L1523. The 13CO(J=1→0) emission is used for tracing the gas, and the IR emissions, for tracing the dust constituent. In order to match the beam resolution between the images, a beam de-convolution algorithm based on the Maximum Correlation Method (MCM) was applied on the Infrared Astronomical Satellite (IRAS) data. The morphology of 13CO column density map shows a close correlation to that of 100 μm dust optical depth. The distribution of the optical depth at 100 μm follows that of gas column density more closely than does the flux map at either 60 or 100 μm. The ratio of the 13CO column density to the 100 μm optical depth shows a decreasing trend with increasing dust optical depth in the central part, indicating possible molecular gas condensation onto dust particles. The excessive decrease in the CO column density in the envelope may most probably be due to the photo-dissociation of CO molecules.
暗云l1523中气体与尘埃的关系——CO气体耗竭的观测证据
研究了暗球状体L1523的气体和尘埃柱密度之间的相关性。13CO(J=1→0)发射用于追踪气体,红外发射用于追踪粉尘成分。为了匹配图像间的波束分辨率,对红外天文卫星(IRAS)数据采用了基于最大相关法(MCM)的波束反卷积算法。13CO柱密度图的形貌与100 μm粉尘光深的形貌密切相关。相比于60 μm和100 μm处的通量图,100 μm处的光深分布更接近于气柱密度的分布。13CO柱密度与100 μm光深之比随着中部粉尘光深的增加呈减小趋势,表明可能存在气体分子在粉尘颗粒上的凝聚现象。包膜中CO柱密度的过度降低很可能是由于CO分子的光解作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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