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Searching for Interstellar C-60(+) Using a New Method for High Signal-to-noise HST/STIS Spectroscopy

机译:使用新方法搜索Interstellar C-60(+),用于高信号 - 噪声HST / STIS光谱

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Due to recent advances in laboratory spectroscopy, the first optical detection of a very large molecule has been claimed in the diffuse interstellar medium (ISM): C-60(+) (ionized Buckminsterfullerene). Confirming the presence of this molecule would have significant implications regarding the carbon budget and chemical complexity of the ISM. Here we present results from a new method for ultra-high signal-to-noise ratio (S/N) spectroscopy of background stars in the near-infrared (at wavelengths of 0.9-1 mu m), using the Hubble Space Telescope (HST) Imaging Spectrograph (STIS) in a previously untested "STIS scan" mode. The use of HST provides the crucial benefit of eliminating the need for error-prone telluric-correction methods in the part of the spectrum where the C-60(+) bands lie and where the terrestrial water vapor contamination is severe. Our STIS spectrum of the heavily reddened B0 supergiant star BD+63 1964 reaches an unprecedented S/N for this instrument (similar to 600-800), allowing the detection of the diffuse interstellar band (DIB) at 9577 angstrom attributed to (+)(60), as well as new DIBs in the near-IR. Unfortunately, the presence of overlapping stellar lines, and the unexpected weakness of the C-60(+) bands in this sightline, prevents conclusive detection of the weaker C-60(+) bands. A probable correlation between the 9577 angstrom DIB strength and interstellar radiation field is identified, which suggests that more strongly irradiated interstellar sightlines will provide the optimal targets for future C-60(+) searches.
机译:由于实验室光谱学的最新进展,在漫射星际介质(ISM):C-60(+)(电离巴克敏斯特富勒烯)中首次对超大分子进行光学探测。确认这种分子的存在将对ISM的碳收支和化学复杂性产生重大影响。在这里,我们展示了一种新方法的结果,该方法使用哈勃太空望远镜(HST)成像光谱仪(STIS)在之前未经测试的“STIS扫描”模式下,对背景恒星进行近红外(波长为0.9-1μm)超高信噪比(S/N)光谱分析。在C-60(+)波段和地面水汽污染严重的光谱部分,HST的使用提供了消除易出错的大地电磁校正方法的关键好处。我们的深红色B0超巨星BD+63 1964的STIS光谱达到了该仪器前所未有的S/N(类似于600-800),允许探测到9577埃(归因于(+)(60))的漫射星际带(DIB),以及近红外中的新DIB。不幸的是,重叠恒星线的存在,以及这条视线中C-60(+)带的意外弱点,阻止了对较弱C-60(+)带的最终检测。确定了9577埃DIB强度与星际辐射场之间可能存在的相关性,这表明更强烈的辐射星际视线将为未来的C-60(+)搜索提供最佳目标。

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