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Far Ultraviolet Spectroscopic Explorer Observations of Possible Infalling Planetesimals in the 51 Ophiuchi Circumstellar Disk

机译:远紫外分光镜探测器观测到的51个Ophiuchi圆星盘中可能存在的小行星

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We present the first observations of the circumstellar (CS) disk system 51 Ophiuchi with the Far Ultraviolet Spectroscopic Explorer (FUSE). We detect several absorption lines arising from the unusual metastable atomic species N I (2D), N I (2P), and S II (2D). These levels lie 1.8-3.6 eV above the ground level and have radiative decay lifetimes of 2 days or less, indicating that the lines arise from warm CS gas. The high S/N FUSE spectra, obtained 6 days apart, also show time-variable absorption features arising from N I, N II, O I (1D), and Fe III, which are redshifted with respect to the stellar velocity. The resolved redshifted absorption extends over many tens of km s-1 (40 for N I, 100 for N II, 65 for O I (1D), and 84 for Fe III). We calculate column densities for all the variable infalling CS gasses, using the apparent optical depth method. The Fe III and N II infalling gasses must be produced through collisional ionization, and the ionization fraction of nitrogen suggests a gas temperature between 20,000 and 34,000 K. The infalling gas shows a peculiar, nonsolar composition, with nitrogen and iron more abundant than carbon. We also set upper limits on the line-of-sight column densities of H2 and CO. These observations strengthen the connection between 51 Oph and the older debris-disk system β Pictoris and indicate that there may be infalling planetesimals in the 51 Oph system.
机译:我们用远紫外光谱浏览器(FUSE)介绍了星盘(CS)盘系统51 Ophiuchi的首次观测。我们检测到由不寻常的亚稳态原子物种N I(2D),N I(2P)和S II(2D)引起的几条吸收线。这些水平位于地面之上1.8-3.6 eV,辐射衰变寿命为2天或更短,表明这些线路是由温暖的CS气体产生的。相距6天获得的高S / N FUSE光谱还显示了N I,N II,O I(1D)和Fe III引起的随时间变化的吸收特征,它们相对于恒星速度发生了红移。分辨出的红移吸收范围涵盖了几十km s-1(N I为40,N II为100,O I(1D)为65,Fe III为84)。我们使用视在光学深度方法计算所有可变下降CS气体的柱密度。 Fe III和N II下降气体必须通过碰撞电离产生,而氮的电离分数表明气体温度在20,000和34,000 K之间。下降的气体表现出独特的非太阳能组成,其中的氮和铁比碳丰富。我们还为H2和CO的视线列密度设置了上限。这些观察结果加强了51 Oph和较旧的碎片盘系统βPictoris之间的联系,并表明51 Oph系统中可能存在下降的小行星。

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