论文标题

GAIA数据版本3:在862 nm处探索和映射漫射的星际频段

Gaia Data Release 3: Exploring and mapping the diffuse interstellar band at 862 nm

论文作者

Gaia collaboration, Schultheis, M., Zhao, H., Zwitter, T., Marshall, D. J., Drimmel, R., Frémat, Y., Bailer-Jones, C. A. L., Recio-Blanco, A., Kordopatis, G., de Laverny, P., Andrae, R., Dharmawardena, T. E., Fouesneau, M., Sordo, R.

论文摘要

弥漫性星体条带(DIB)是光谱观测中常见的星际吸收特征,但它们的起源仍不清楚。 DIB在星际培养基(ISM)的生命周期中起着重要作用,也可以用于追踪银河系结构。在这里,我们证明了Gaia Dr3中Gaia-radial速度光谱仪(RVS)的能力,以揭示导致RVS Passband 862 nm最突出的DIB的未知分子物种的空间分布,从而探索了来自太阳几公斤的Galactic ISM。使用适合酷星的高斯轮廓和热星的高斯工艺在GSP规格模块中测量DIB。除了等效宽度及其不确定性外,Gaia DR3还提供了其特征性的中心波长,宽度和质量标志。我们提供了一个大量的样本,包括476.117个单独的DIB测量,以覆盖整个天空的均匀方式获得。我们将DIB载体的空间分布与星际红色的空间分布进行了比较,并发现证据表明DIB载体存在于太阳周围的当地气泡中,几乎没有灰尘。我们以$ 0.19 \ pm 0.04 $angström/kpc和$ \ rm 98.60 _ { - 8.46}^{+11.10} $ pc的比例高度为$ 0.04 $angström/kpc,局部密度为$ 0.19 \ pm 0.04 \ pm 0.19 \ pm 0.19 \ pm 0.19 \ pm 0.19 \ pm,我们表征了dib等效宽度。后者小于尘埃尺度的高度,表明DIB更集中于银河面。我们以前所未有的精度($ \rmλ_{0} = 8620.86 \,\ pm 0.019 $ 0.019 $ANGSTRöm在空气中)确定其静止帧长度($ \rmλ_{0} = 8620.86 \,\ pm pm 0.019 $angström),并揭示了DIB速度之间的显着对应关系,这表明气体速度与862 NM Dib Carrier carsier is MacRoec相关。

Diffuse interstellar bands (DIBs) are common interstellar absorption features in spectroscopic observations but their origins remain unclear. DIBs play an important role in the life cycle of the interstellar medium (ISM) and can also be used to trace Galactic structure. Here, we demonstrate the capacity of the Gaia-Radial Velocity Spectrometer (RVS) in Gaia DR3 to reveal the spatial distribution of the unknown molecular species responsible for the most prominent DIB at 862 nm in the RVS passband, exploring the Galactic ISM within a few kiloparsecs from the Sun. The DIBs are measured within the GSP-Spec module using a Gaussian profile fit for cool stars and a Gaussian process for hot stars. In addition to the equivalent widths and their uncertainties, Gaia DR3 provides their characteristic central wavelength, width, and quality flags. We present an extensive sample of 476.117 individual DIB measurements obtained in a homogeneous way covering the entire sky. We compare spatial distributions of the DIB carrier with interstellar reddening and find evidence that DIB carriers are present in a local bubble around the Sun which contains nearly no dust. We characterised the DIB equivalent width with a local density of $0.19 \pm 0.04$ Angström/kpc and a scale height of $\rm 98.60_{-8.46}^{+11.10}$ pc. The latter is smaller than the dust scale height, indicating that DIBs are more concentrated towards the Galactic plane. We determine the rest-frame wavelength with unprecedented precision ($\rm λ_{0} = 8620.86\, \pm 0.019$ Angström in air) and reveal a remarkable correspondence between the DIB velocities and the CO gas velocities, suggesting that the 862 nm DIB carrier is related to macro-molecules.

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