论文标题

弥漫性星体带和延长的红色发射的载体是否相同?

Are the Carriers of Diffuse Interstellar Bands and Extended Red Emission the same?

论文作者

Lai, Thomas S. -Y., Witt, Adolf N., Alvarez, Carlos, Cami, Jan

论文摘要

我们报告了通过电离前端和星云IC 63的解离锋之间看到的背景恒星的第一光谱观察结果。该光解散区域(PDR)表现出强烈的延长红色发射(ERE),归因于大分子/离子的荧光归因于荧光。我们在恒星谱中检测到了强的弥漫性星际带(DIB),其中包括$ 4428的异常强和宽的DIB。与ERE相关的强dib的检测可能与Dib和ERE携带者相同的建议是一致的。可能的过程是反复发作的荧光,这是通过从高度激发的基态振动水平到低洼电子状态的反向内部转换,随后向地面过渡。这为分子/分子离子的快速辐射冷却提供了一条途径,从而大大提高了它们在强烈辐照的环境中生存的能力。 IC 63中DIB $ 5797 $ 5797 $ 5797和$λ$ 5780的等效宽度(EW)的比率与在具有UV星际辐射场(ISRF)弱的低密度星际介质中观察到的比率相同。这伪造了这两个DIB的比率可以作为ISRF紫外线强度的量度。在接近DIB的位置的PDR的Nebular Spectrum的观察结果未能揭示出在红色矩形星云的光谱中看到的任何急剧发射特征。这表明了这些特征的载体与在波长稍短的波长下看到的dibs相同的提议。

We report the first spectroscopic observations of a background star seen through the region between the ionization front and the dissociation front of the nebula IC 63. This photodissociation region (PDR) exhibits intense extended red emission (ERE) attributed to fluorescence by large molecules/ions. We detected strong diffuse interstellar bands (DIB) in the stellar spectrum, including an exceptionally strong and broad DIB at $λ$4428. The detection of strong DIBs in association with ERE could be consistent with the suggestion that the carriers of DIBs and ERE are identical. The likely ERE process is recurrent fluorescence, enabled by inverse internal conversions from highly excited vibrational levels of the ground state to low-lying electronic states with subsequent transitions to ground. This provides a path to rapid radiative cooling for molecules/molecular ions, greatly enhancing their ability to survive in a strongly irradiated environment. The ratio of the equivalent widths (EW) of DIBs $λ$5797 and $λ$5780 in IC 63 is the same as that observed in the low-density interstellar medium with UV interstellar radiation fields (ISRF) weaker by at least two orders of magnitude. This falsifies suggestions that the ratio of these two DIBs can serve as a measure of the UV strength of the ISRF. Observations of the nebular spectrum of the PDR of IC 63 at locations immediately adjacent to where DIBs were detected failed to reveal any presence of sharp emission features seen in the spectrum of the Red Rectangle nebula. This casts doubts upon proposals that the carriers of these features are the same as those of DIBs seen at slightly shorter wavelengths.

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