Institute for Advanced Research, Nagoya University, Nagoya, Japan.
Department of Physics, Nagoya University, Nagoya, Japan.
Nature. 2023 May;617(7960):261-264. doi: 10.1038/s41586-023-05901-3. Epub 2023 May 10.
The physical conditions of the circumgalactic medium are investigated by means of intervening absorption-line systems in the spectrum of background quasi-stellar objects (QSOs) out to the epoch of cosmic reionization. A correlation between the ionization state of the absorbing gas and the nature of the nearby galaxies has been suggested by the sources detected in either Lyα or [C II] 158 μm near to, respectively, highly ionized and neutral absorbers. This is also probably linked to the global changes in the incidence of absorption systems of different types and the process of cosmic reionization. Here we report the detection of two [C II]-emitting galaxies at redshift z ≈ 5.7 that are associated with a complex, high-ionization C IV absorption system. These objects are part of an overdensity of galaxies and have compact sizes (<2.4 kpc) and narrow linewidths (full width at half maximum (FWHM) ≈ 62-64 km s). Hydrodynamic simulations predict that similar narrow [C II] emission may arise from the heating of small (≲3 kpc) clumps of cold neutral medium or a compact photodissociation region. The lack of counterparts in the rest-frame ultraviolet (UV) indicates severe obscuration of the sources that are exciting the [C II] emission. These results may suggest a connection between the properties of the [C II] emission, the rare overdensity of galaxies and the unusual high ionization state of the gas in this region.
通过背景类星体(QSO)光谱中星系际吸收线系统研究了星系际介质的物理条件,这些 QSO 的观测范围达到宇宙再电离时代。在 Lyα 或 [C II] 158 μm 附近探测到的、分别处于高度电离和中性吸收状态的源,暗示了吸收气体的电离状态与附近星系的性质之间存在相关性。这也可能与不同类型吸收系统的发生率以及宇宙再电离过程的全局变化有关。在这里,我们报告了两个在红移 z ≈ 5.7 处的 [C II]发射星系的探测结果,它们与一个复杂的高电离 C IV 吸收系统有关。这些物体是星系过密度的一部分,具有紧凑的大小(<2.4 kpc)和窄的线宽(半最大值全宽(FWHM)≈ 62-64 km s)。流体动力学模拟预测,类似的窄 [C II] 发射可能源于小(≲3 kpc)冷中性介质团或紧凑光解区的加热。在 rest-frame 紫外(UV)中没有对应物表明激发 [C II] 发射的源存在严重的遮挡。这些结果可能表明 [C II] 发射的性质、星系过密度的稀有性以及该区域气体异常高的电离状态之间存在联系。