论文标题

与灰尘演变一致的新星系光谱分布模型

A new galaxy spectral energy distribution model consistent with the evolution of dust

论文作者

Nishida, Kazuki Y., Takeuchi, Tsutomu T., Nagata, Takuma, Asano, Ryosuke S.

论文摘要

星系的光谱能分布(SED)提供了有关相关物理过程的基本信息。但是,SED在其星际培养基中受到灰尘的显着影响。灰尘主要由渐近巨型分支星星和II型超新星产生。另外,尘埃质量通过金属积聚增加,晶粒尺寸随谷物之间的碰撞而变化。每个过程和灭绝的贡献取决于尺寸分布。因此,SED模型应处理灰尘质量和尺寸分布的演变。尽管尘埃进化的重要性,但许多以前的SED模型并未以物理一致的方式考虑总质量和尺寸分布的演变。在这项工作中,我们基于与化学演化一致的尘埃演化模型构建了一个新的辐射转移模型。为了降低计算成本,我们采用了巨粒和一维平面平行星系近似。作为一种基准案例,我们计算了在封闭框模型下的各个年龄的银河系状星系SED。我们发现,在100 〜MYR时的星系不会产生小晶粒,例如多环芳烃。 1次回旋后,我们观察到由于尘埃质量迅速增加而导致的红外发射和衰减急剧增加。我们的新模型可以首次适当地对待这种现象。该模型可用于在进化的任何阶段将SED拟合到星系。

The spectral energy distribution (SED) of galaxies provides fundamental information on the related physical processes. However, the SED is significantly affected by dust in its interstellar medium. Dust is mainly produced by asymptotic giant branch stars and Type II supernovae. In addition, the dust mass increases through the metal accretion, and the grain size changes by the collisions between the grains. The contribution of each process and the extinction depend on the size distribution. Therefore, the SED model should treat the evolution of the dust mass and size distribution. In spite of the importance of dust evolution, many previous SED models have not considered the evolution of the total mass and size distribution in a physically consistent manner. In this work, we constructed a new radiative transfer SED model, based on our dust evolution model consistent with the chemical evolution. To reduce the computational cost, we adopted the mega-grain and the one-dimensional plane parallel galaxy approximation. As a fiducial case, we calculated Milky Way-like galaxy SEDs at various ages under the closed-box model. We found that a galaxy at the age of 100~Myr does not produce small grains such as polycyclic aromatic hydrocarbons. After 1~Gyr, we observed a drastic increase of infrared emission and attenuation caused by a rapid increase of dust mass. This phenomenon can be treated appropriately for the first time by our new model. This model can be used for the SED fitting to a galaxy at any stage of evolution.

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