论文标题

测试星系碰撞引起的形成场景,以使暗物质缺陷星系的痕迹具有球形簇对潮汐力的敏感性

Testing the galaxy collision induced formation scenario for the trail of dark matter deficient galaxies with the susceptibility of globular clusters to the tidal force

论文作者

Ogiya, Go, Bosch, Frank C. van den, Burkert, Andreas, Kang, Xi

论文摘要

有人提出,在NGC1052附近的一系列漫射星系,包括两个暗物质缺陷星系(DMDG),这是由于两个富含气体的矮星系之间的高速碰撞而形成的,一个绑定到NGC1052和另一个绑定在没有结合的Orbit上的NGC1052。碰撞压缩了碰撞星系的气体储层,这反过来触发了一阵恒星形成。相反,祖细胞星系中的暗物质和预先存在的恒星穿过它。由于压缩气体中的高压有利于形成大型球状簇(GCS),因此这种情况可以解释具有大量大量GC的DMDG的形成,这与NGC1052-DF2(DF2)和NGC1052-DF4的观察结果一致。这种“迷你子弹群”场景的潜在困难是,DMDG中观察到的GC的空间分布已扩展。 GCS经历动态摩擦,导致其轨道随着时间的流逝而腐烂。因此,它们在形成时的分布应该比目前观察到的更扩展。使用半分析模型,我们表明DF2中GC的观察到的位置和速度意味着它们必须在距DF2中心的5-10kpc的径向距离中形成。但是,正如我们所证明的那样,这种情况很难与NGC1052的强潮力剥离DF2的延伸GC,需要33-59个大量的GC在碰撞中形成碰撞以解释观察结果。

It has been suggested that a trail of diffuse galaxies, including two dark matter deficient galaxies (DMDGs), in the vicinity of NGC1052 formed because of a high-speed collision between two gas-rich dwarf galaxies, one bound to NGC1052 and the other one on an unbound orbit. The collision compresses the gas reservoirs of the colliding galaxies, which in turn triggers a burst of star formation. In contrast, the dark matter and pre-existing stars in the progenitor galaxies pass through it. Since the high pressures in the compressed gas are conducive to the formation of massive globular clusters (GCs), this scenario can explain the formation of DMDGs with large populations of massive GCs, consistent with the observations of NGC1052-DF2 (DF2) and NGC1052-DF4. A potential difficulty with this `mini bullet cluster' scenario is that the observed spatial distributions of GCs in DMDGs are extended. GCs experience dynamical friction causing their orbits to decay with time. Consequently, their distribution at formation should have been even more extended than that observed at present. Using a semi-analytic model, we show that the observed positions and velocities of the GCs in DF2 imply that they must have formed at a radial distance of 5-10kpc from the center of DF2. However, as we demonstrate, the scenario is difficult to reconcile with the fact that the strong tidal forces from NGC1052 strip the extendedly distributed GCs from DF2, requiring 33-59 massive GCs to form at the collision to explain observations.

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