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An ISO View on Interstellar and Cometary Ice Chemistry

机译:ISO关于星际和彗星冰化学的观点

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摘要

The ISO-SWS instrument offering a large wavelength coverage and a resolution well adapted to the solid phase has changed our knowledge of the physical-chemical properties of ices in space. The discovery of many new ice features was reported and the comparison with dedicated laboratory experiments allowed the determination of more accurate abundances of major ice components. The presence of CO_2 ice has recently been confirmed with the SAWS (Short Wavelength Spectrometer) as a dominant ice component of interstellar grain mantles. The bending mode of CO_2 ice shows a particular triple-peak structure which provides first evidence for extensive ice segregation in the line-of-sight toward massive protostars. A comparison of interstellar and cometary ices using recent ISO data and ground-based measurements has revealed important similarities but also indicated that comets contain, beside pristine interstellar material, admixtures of processed material. The investigation of molecules in interstellar clouds is essential to reveal the link between dust in the interstellar medium and in the Solar System.
机译:ISO-SWS仪器具有大的波长覆盖范围和非常适合固相的分辨率,这改变了我们对太空冰的物理化学性质的了解。据报道发现了许多新的冰特征,并且与专门的实验室实验进行了比较,从而可以确定主要冰成分的更准确的丰度。最近,通过短波谱仪(SAWS)确认了CO_2冰的存在,它是星际纹幔的主要冰组分。 CO_2冰的弯曲模式显示出特殊的三峰结构,这为大规模质子星在视线范围内的广泛冰分离提供了首个证据。使用最新的ISO数据和基于地面的测量结果对星际和彗星冰进行比较,发现了重要的相似之处,但同时也表明,彗星除了原始星际材料外还含有加工材料的混合物。研究星际云中的分子对于揭示星际介质和太阳系中尘埃之间的联系至关重要。

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