论文标题

通过高分辨率数值模拟,通过高速星系碰撞产生的暗物质缺陷星系

Dark Matter Deficient Galaxies Produced Via High-velocity Galaxy Collisions In High-resolution Numerical Simulations

论文作者

Shin, Eun-jin, Jung, Minyong, Kwon, Goojin, Kim, Ji-hoon, Lee, Joohyun, Jo, Yongseok, Oh, Boon Kiat

论文摘要

在暗物质中不足的漫射矮星系的最新发现似乎挑战了我们宇宙中当前结构形成的范式。我们描述了数值实验,以确定当两个富含气体的,矮小的星系碰撞,高相对速度为$ \ sim 300 \,{\ rm kms^{ - 1}} $时,是否可以产生所谓的暗物质缺陷的星系(DMDG)。使用理想化的高分辨率模拟,以及基于网格的和粒子的重力 - 流动力学代码,我们发现DMDGs可以作为高速星系碰撞形成,将暗物质与温暖的磁盘气体与随后被冲击和潮汐相互作用压缩以形成星星以形成恒星。然后,使用大型模拟宇宙Illustristng,我们发现了许多高速星系碰撞事件,其中预期DMDG会形成。但是,我们没有发现证据表明这些类型的碰撞实际上在TNG100-1运行中产生了DMDG。我们认为,数值实验的分辨率对于实现“碰撞引起的” DMDG形成方案至关重要。我们的结果表明,星系可以以非常规的暗物质分数形成的众多途径之一。

The recent discovery of diffuse dwarf galaxies that are deficient in dark matter appears to challenge the current paradigm of structure formation in our Universe. We describe the numerical experiments to determine if the so-called dark matter deficient galaxies (DMDGs) could be produced when two gas-rich, dwarf-sized galaxies collide with a high relative velocity of $\sim 300\,{\rm kms^{-1}}$. Using idealized high-resolution simulations with both mesh-based and particle-based gravito-hydrodynamics codes, we find that DMDGs can form as high-velocity galaxy collisions separate dark matter from the warm disk gas which subsequently is compressed by shock and tidal interaction to form stars. Then using a large simulated universe IllustrisTNG, we discover a number of high-velocity galaxy collision events in which DMDGs are expected to form. However, we did not find evidence that these types of collisions actually produced DMDGs in the TNG100-1 run. We argue that the resolution of the numerical experiment is critical to realize the "collision-induced" DMDG formation scenario. Our results demonstrate one of many routes in which galaxies could form with unconventional dark matter fractions.

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