论文标题

极端低表面亮度银河系中的电离气体发射线的第一光谱研究1

First spectroscopic study of ionized gas emission lines in the extreme low surface brightness galaxy Malin 1

论文作者

Junais, Boissier, S., Epinat, B., Amram, P., Madore, B. F., Boselli, A., Koda, J., de Paz, A. Gil, Mateos, J. C. Muños, Chemin, L.

论文摘要

Malin 1是最大的已知低表面亮度(LSB)星系,是所谓的巨型LSB的原型。此类星系的结构和起源仍然很少了解,尤其是由于缺乏高分辨率运动学和光谱数据。我们使用来自Malin 1的光谱观察的发射线,目的是对Malin 1的内部动力学和星形形成历史产生新的限制。我们从Malin 1的不同区域提取了16个光谱,并计算了这些区域的旋转速度,并从经过的h $ h $ h $ a $ sistission系列的旋转速度和恒星形成率中提取了这些区域的旋转速度。我们将数据与MALIN 1的现有数据和模型进行比较。首次提出Malin 1的内部旋转曲线,在径向范围R <10 kpc中,旋转速度的急剧上升至少为350 km/s(具有较大的分散体),以前尚未观察到。我们使用这些数据来研究Malin 1的新质量模型。我们表明,在内部区域中,动力学可能由恒星主导(尽管我们的模型都无法解释所测量的最高速度),但是在很大的半径上,巨大的深色物质光环仍然必要。 H $α$通量衍生的恒星形成速率与内部区域的早期型磁盘一致,并且与Malin 1的巨型磁盘外部的扩展紫外线星系中发现的水平。我们还找到了高金属性的迹象,但内部区域的灰尘含量低。

Malin 1 is the largest known low surface brightness (LSB) galaxy, the archetype of so-called giant LSBs. The structure and the origin of such galaxies are still poorly understood, especially due to the lack of high-resolution kinematics and spectroscopic data. We use emission lines from spectroscopic observations of Malin 1 aiming to bring new constraints on the internal dynamics and star formation history of Malin 1. We have extracted a total of 16 spectra from different regions of Malin 1 and calculated the rotational velocities of these regions from the wavelength shifts and star formation rates from the observed H$α$ emission line fluxes. We compare our data with existing data and models for Malin 1. For the first time we present the inner rotation curve of Malin 1, characterized in the radial range r < 10 kpc by a steep rise in the rotational velocity up to at least 350 km/s (with a large dispersion), which had not been observed previously. We use these data to study a suite of new mass models for Malin 1. We show that in the inner regions dynamics may be dominated by the stars (although none of our models can explain the highest velocities measured) but that at large radii a massive dark matter halo remains necessary. The H$α$ fluxes derived star formation rates are consistent with an early-type disk for the inner region, and with the level found in extended UV galaxies for the outer parts of the giant disk of Malin 1. We also find signs of high metallicity but low dust content for the inner regions.

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