论文标题
Centaurus A中心的多相环境
The multi-phase environment in the centre of Centaurus A
论文作者
论文摘要
我们研究活性银核Centaurus a(CEN A)附近的多相培养基。与Alma和Chandra观测值结合的高分辨率观察结果表明,热X射线发射等离子体与CEN A中的温暖和冷介质共存。这种复杂的环境是对其诊断效果产生重大影响的CO线的来源。我们介绍了涵盖核区域的两种上述仪器的图像(直径为10'',即〜180 pc),我们研究了血浆热平衡的条件以及嵌入热X射线发射气体中的凉爽云的可能共存。此外,我们证明了多相培养基自然源于由于核与环境气体和尘埃的高能辐射场相互作用而产生的热不稳定性(TI)。我们证明,冷气云可以在与热等离子体的相互接触中共存,但甚至更冷的尘土云云也必须与热区域相距甚远。最后,我们提出了一个与Chandra图像一致的热等离子体和CO线发射区域外观的3-D模型,并在Alma从该模型中观察到的特定分子线中得出了整合的发射率。为了重现观察到的图像和CO线光度,灰尘壳必须厚约420 pc,并且位于中心约1000 pc。
We study the multi-phase medium in the vicinity of the active galactic nucleus Centaurus A (Cen A). Combined high-resolution observations with the ALMA and Chandra observatories indicate that the hot X-ray emitting plasma coexists with the warm and cold media in Cen A. This complex environment is a source of CO lines with great impact for its diagnostics. We present the images from the two above-mentioned instruments covering the nuclear region (diameter of 10'' i.e., ~180 pc), and we study the conditions for plasma thermal equilibrium and possible coexistence of cool clouds embedded within the hot X-ray emitting gas. Further, we demonstrate that the multi-phase medium originates naturally by the thermal instability (TI) arising due to the interaction of the high-energy radiation field from the nucleus with the ambient gas and dust. We demonstrate that cold gas clouds can coexist in the mutual contact with hot plasma, but even colder dusty molecular clouds have to be distanced by several hundred pc from the hot region. Finally, we propose a 3-D model of the appearance of the hot plasma and the CO line-emitting regions consistent with the Chandra image and we derive the integrated emissivity in specific molecular lines observed by ALMA from this model. To reproduce the observed images and the CO line luminosity the dusty shell has to be ~420 pc thick and located at ~1000 pc from the centre.