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High energy electron irradiation of interstellar carbonaceous dust analogs: Cosmic ray effects on the carriers of the 3.4 µm absorption band

机译:星际含碳尘埃类似物的高能电子辐射:宇宙射线对3.4 µm吸收带的载流子的影响

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摘要

The effects of cosmic rays on the carriers of the interstellar 3.4 μm absorption band have been investigated in the laboratory. This band is attributed to stretching vibrations of CH3 and CH2 in carbonaceous dust. It is widely observed in the diffuse interstellar medium (ISM), but disappears in dense clouds. Destruction of CH3 and CH2 by cosmic rays could become relevant in dense clouds, shielded from the external ultraviolet field. For the simulations, samples of hydrogenated amorphous carbon (a-C:H) have been irradiated with 5 keV electrons. The decay of the band intensity vs electron fluence reflects a-C:H dehydrogenation, which is well described by a model assuming that H2 molecules, formed by the recombination of H atoms liberated through CH bond breaking, diffuse out of the sample. The CH bond destruction rates derived from the present experiments are in good accordance with those from previous ion irradiation experiments of HAC. The experimental simplicity of electron bombardment has allowed the use of higher energy doses than in the ion experiments. The effects of cosmic rays on the aliphatic components of cosmic dust are found to be small. The estimated cosmic ray destruction times for the 3.4 μm band carriers lie in the 108 yr range and cannot account for the disappearance of this band in dense clouds, which have characteristic lifetimes of 3 × 107 yr. The results invite a more detailed investigation of the mechanisms of CH bond formation and breaking in the intermediate region between diffuse and dense clouds.
机译:在实验室中已经研究了宇宙射线对星际3.4μm吸收带的载流子的影响。该频带归因于碳粉尘中CH3和CH2的拉伸振动。在弥漫星际介质(ISM)中广泛观察到它,但在密集云中消失。宇宙射线对CH3和CH2的破坏可能与浓密的云层有关,这些云层不受外部紫外线的影响。为了进行模拟,已用5 keV电子辐照了氢化非晶碳(a-C:H)样品。谱带强度对电子注量的衰减反映了a-C:H脱氢,该模型很好地描述了假设通过CH键断裂释放的H原子的重组形成的H2分子从样品中扩散出来。从本实验得到的CH键破坏率与先前的HAC的离子辐照实验完全一致。电子轰击的实验简单性使得可以使用比离子实验更高的能量剂量。发现宇宙射线对宇宙尘埃的脂肪族成分的影响很小。 3.4μm带载子的估计宇宙射线破坏时间在10 8 yr范围内,不能解释该带在密集云中的消失,密集云的特征寿命为3×10 7 年。这些结果邀请对CH键在弥散云层和密集云层之间的中间区域形成和断裂的机理进行更详细的研究。

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