论文标题
SY2 Galaxy NGC 5643中的多相反馈过程
Multi-phase feedback processes in the Sy2 galaxy NGC 5643
论文作者
论文摘要
我们研究了禁止使用的SY 2 Galaxy NGC 5643的中央〜3 kpc中的多相反馈过程。我们使用冷分子气(Alma CO(2-1))和离子化气(Muse IFU)的观测值。我们研究沿着流出区的不同区域,该区域沿与无线电射流相同的方向(东西方)以及宿主星系磁盘中的核/周环区域延伸至〜2.3 kpc。冷分子气体的流出速度(中位ventral〜189 km S^-1)通常低于流出的离子气体的流出速度,该气体的离子气体速度达到750 km s^-1的速度高达750 km s^-1,靠近AGN,它们的空间剖面遵循了离子化相。这表明星系盘中流出的分子气体正被AGN风夹住。我们得出了〜5.2x10^7 msun和8.5x10^4 MSUN和分子和离子流出的流出质量率的分子和离子流出质量〜51 msun yr^-1和0.14 msun yr^-1。因此,分子相占主导地位的流出质量和流出质量率,而流出动力和动量在两个阶段相似。但是,分子和离子流出阶段的风能载荷〜27-5和<1,这表明分子相并非稳定动量,而电离最肯定的是。东部螺旋臂的分子气体含量(〜1.5x10^7 msun)约为西部含量的50-70%。我们将其解释为宿主星系中AGN风影响产生的分子气体的破坏/清除。分子相位动量的增加意味着,AGN风中动能的一部分被传递到分子流出。这表明,在类似于Sy的AGN(例如NGC 5643)中,辐射/Quasar和动力学/无线电AGN反馈模式共存,即使在KPC-Scales处也可以通过正面和(轻度)负反馈来塑造宿主星系。
We study the multi-phase feedback processes in the central ~3 kpc of the barred Sy 2 galaxy NGC 5643. We use observations of the cold molecular gas (ALMA CO(2-1)) and ionized gas (MUSE IFU). We study different regions along the outflow zone which extends out to ~2.3 kpc in the same direction (east-west) as the radio jet, as well as nuclear/circumnuclear regions in the host galaxy disk. The deprojected outflowing velocities of the cold molecular gas (median Vcentral~189 km s^-1) are generally lower than those of the outflowing ionized gas, which reach deprojected velocities of up to 750 km s^-1 close to the AGN, and their spatial profiles follow those of the ionized phase. This suggests that the outflowing molecular gas in the galaxy disk is being entrained by the AGN wind. We derive molecular and ionized outflow masses of ~5.2x10^7 Msun and 8.5x10^4 Msun and molecular and ionized outflow mass rates of ~51 Msun yr^-1 and 0.14 Msun yr^-1. Therefore, the molecular phase dominates the outflow mass and outflow mass rate, while the outflow kinetic power and momentum are similar in both phases. However, the wind momentum load for the molecular and ionized outflow phases are ~27-5 and <1, which suggests that the molecular phase is not momentum conserving while the ionized one most certainly is. The molecular gas content (~1.5x10^7 Msun) of the eastern spiral arm is approximately 50-70% of the content of the western one. We interpret this as destruction/clearing of the molecular gas produced by the AGN wind impacting in the host galaxy. The increase of the molecular phase momentum implies that part of the kinetic energy from the AGN wind is transmitted to the molecular outflow. This suggest that in Sy-like AGN such as NGC 5643, the radiative/quasar and the kinetic/radio AGN feedback modes coexist and may shape the host galaxies even at kpc-scales via both positive and (mild) negative feedback.