首页> 外文期刊>The Astrophysical journal >The Role of Polycyclic Aromatic Hydrocarbons in Ultraviolet Extinction. I. Probing Small Molecular Polycyclic Aromatic Hydrocarbons*
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The Role of Polycyclic Aromatic Hydrocarbons in Ultraviolet Extinction. I. Probing Small Molecular Polycyclic Aromatic Hydrocarbons*

机译:多环芳烃在紫外线消光中的作用。 I.探测小分子多环芳烃*

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We have obtained new Hubble Space Telescope/Space Telescope Imaging Spectrograph spectra to search for structure in the ultraviolet interstellar extinction curve, with particular emphasis on a search for absorption features produced by polycyclic aromatic hydrocarbons (PAHs). The presence of these molecules in the interstellar medium has been postulated to explain the infrared emission features seen in the 3-13 μm spectra of numerous sources. Ultraviolet (UV) spectra are uniquely capable of identifying specific PAH molecules. We obtained high signal-to-noise ratio UV spectra of stars that are significantly more reddened than those observed in previous studies. These data put limits on the role of small (30-50 carbon atoms) PAHs in UV extinction and call for further observations to probe the role of larger PAHs. PAHs are of importance because of their ubiquity and high abundance inferred from the infrared data, and also because they may link the molecular and dust phases of the interstellar medium. A presence or absence of UV absorption bands due to PAHs could be a definitive test of this hypothesis. We should be able to detect a 20 ? wide feature down to a 3 σ limit of ~0.02 AV. No such absorption features are seen other than the well-known 2175 ? bump.
机译:我们已经获得了新的哈勃太空望远镜/太空望远镜成像光谱仪光谱,以搜寻星际紫外线消光曲线中的结构,特别着重于寻找由多环芳烃(PAHs)产生的吸收特征。推测星际介质中这些分子的存在可以解释许多来源的3-13μm光谱中可见的红外发射特征。紫外线(UV)光谱独特地能够识别特定的PAH分子。我们获得了高信噪比的恒星紫外线光谱,该光谱比以前的研究中观察到的显着更红。这些数据限制了小型(30-50个碳原子)PAH在紫外线消光中的作用,并要求进一步观察以探测较大的PAH的作用。 PAH之所以重要,是因为其无处不在和从红外数据推断出的丰度很高,而且还因为它们可能将星际介质的分子和尘埃相联系起来。 PAHs的存在或不存在紫外线吸收带可能是对该假设的确定检验。我们应该能够检测到20个?广角镜的特性降低到3σ极限〜0.02 AV。除了众所周知的2175?以外没有其他吸收特性。磕碰。

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