论文标题

从宇宙模拟中对兽人起源的见解

Insights on the origin of ORCs from cosmological simulations

论文作者

Dolag, Klaus, Böss, Ludwig M., Koribalski, Bärbel S., Steinwandel, Ulrich P., Valentini, Milena

论文摘要

我们研究了由合并事件在高分辨率模拟中驱动的冲击结构,这些模拟导致具有病毒质量M〜1E12 MSOL的星系。我们发现,内部冲击的大小和形态非常类似于新发现的奇数无线电圈(ORC)的大小。这将突出显示出一种被忽视的机制,以形成椭圆星系周围的无线电环,贝壳甚至更复杂的结构。此类内部冲击的M = 2-3的MACH数与观察到的兽人的光谱指数一致。我们估计约有5%的星系可能会发生合并事件,这些事件偶尔会导致银河系子内这种突出的结构,从而解释了观察到的兽人数量少。在电击结构与观察到的兽人的物理大小相匹配的时候,中央星系通常被分类为早期型星系,而没有持续的恒星形成,与观察结果一致。尽管此类合并释放的能量可能会在类似乳白色的光环中已经观察到的无线电发光性供电,但是我们从简单的直接冲击加速模型中预测的亮度远小于观察到的亮度。考虑到我们的宇宙学模拟中估计的候选者数量和较高的观察到的能量,我们建议拟议的场景对于1E13 MSOL左右的光环质量更可能与观察到的兽人中心星系的恒星质量一致。下一代X射线仪器(例如线排放映射器(LEM)),可能会检测到这种冲击。

We investigate shock structures driven by merger events in high-resolution simulations that result in a galaxy with a virial mass M ~ 1e12 Msol. We find that the sizes and morphologies of the internal shocks resemble remarkably well those of the newly-detected class of odd radio circles (ORCs). This would highlight a so-far overlooked mechanism to form radio rings, shells and even more complex structures around elliptical galaxies. Mach numbers of M = 2-3 for such internal shocks are in agreement with the spectral indices of the observed ORCs. We estimate that ~5 percent of galaxies could undergo merger events which occasionally lead to such prominent structures within the galactic halo during their lifetime, explaining the low number of observed ORCs. At the time when the shock structures are matching the physical sizes of the observed ORCs, the central galaxies are typically classified as early-type galaxies, with no ongoing star formation, in agreement with observational findings. Although the energy released by such mergers could potentially power the observed radio luminosity already in Milky-Way-like halos, our predicted luminosity from a simple, direct shock acceleration model is much smaller than the observed one. Considering the estimated number of candidates from our cosmological simulations and the higher observed energies, we suggest that the proposed scenario is more likely for halo masses around 1e13 Msol in agreement with the observed stellar masses of the galaxies at the center of ORCs. Such shocks might be detectable with next generation X-ray instruments like the Line Emission Mapper (LEM).

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