论文标题

观察性的见解对巨型低表面亮度星系的起源

Observational insights on the origin of giant low surface brightness galaxies

论文作者

Saburova, Anna, Chilingarian, Igor, Kasparova, Anastasia, Sil'chenko, Olga, Grishin, Kirill, Katkov, Ivan, Uklein, Roman

论文摘要

巨大的低表面亮度星系(GLSBG)具有动态冷恒星盘,达到130 kpc挑战的半径目前被认为是星系形成机制。我们分析了新的深层长时间光谱观测,档案光学图像和发布的HI和光学光谱数据,用于七个GLSBG的样本,为此我们进行了质量建模并估计了伯克特黑物质曲线的暗物质光环的参数。我们的样本不是形态,恒星种群和总质量的参数并非均匀的,但是,七个星系中的六个位于重质Tully-fisher关系的高质量扩展上。在UGC 1382中,我们检测到相对于扩展的LSB盘的恒星高表面亮度(HSB)盘的全局对重旋转。在1922年的UGC中,具有可能合并的签名,在内盘中可以看到气体反旋转。六个星系具有主动银河核,其中三个具有估计的黑洞质量,其估计的黑洞质量基本低于其(伪 - )凸起特性的预期,这表明合并历史差。总体而言,外盘中的形态,内部动力学和低星形形成效率表明,三种形成场景形成了GLSBG:(i)首先形成HSB星系,然后通过从外部供应中吸收气体来增强LSB盘时,是两个阶段的形成; (ii)一个不寻常的浅黑物质光环; (iii)与合并星系的微调轨道参数和形态的主要合并。

Giant low surface brightness galaxies (gLSBGs) with dynamically cold stellar discs reaching the radius of 130 kpc challenge currently considered galaxy formation mechanisms. We analyse new deep long-slit optical spectroscopic observations, archival optical images and published HI and optical spectroscopic data for a sample of seven gLSBGs, for which we performed mass modelling and estimated the parameters of dark matter haloes assuming the Burkert dark matter density profile. Our sample is not homogeneous by morphology, parameters of stellar populations and total mass, however, six of seven galaxies sit on the high-mass extension of the baryonic Tully-Fisher relation. In UGC 1382 we detected a global counterrotation of the stellar high surface brightness (HSB) disc with respect to the extended LSB disc. In UGC 1922 with signatures of a possible merger, the gas counterrotation is seen in the inner disc. Six galaxies host active galactic nuclei, three of which have the estimated black hole masses substantially below those expected for their (pseudo-)bulge properties suggesting poor merger histories. Overall, the morphology, internal dynamics, and low star formation efficiency in the outer discs indicate that the three formation scenarios shape gLSBGs: (i) a two-stage formation when an HSB galaxy is formed first and then grows an LSB disc by accreting gas from an external supply; (ii) an unusual shallow and extended dark matter halo; (iii) a major merger with fine-tuned orbital parameters and morphologies of the merging galaxies.

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