论文标题
从速度结构函数测量值测量的QSO宿主星云中湍流的经验约束
Empirical constraints on the turbulence in QSO host nebulae from velocity structure function measurements
论文作者
论文摘要
我们在$ z \!\!\!0.5 $ -1.1的四个发光QSO周围呈弥漫性圆形介质的湍流速度场上介绍了第一个经验约束。 Spatially extended nebulae of $\approx\!50$--100 physical kpc in diameter centered on the QSOs are revealed in [OII]$λλ\,3727,3729$ and/or [OIII]$λ\,5008$ emission lines in integral field spectroscopic observations obtained using MUSE on the VLT.我们在一系列尺度上测量了二阶和三阶速度结构函数(VSF),从$ \ lyssim \!5 $ kpc到$ \!20 $ -50 kpc,以量化这些尼布拉中不同量表之间的湍流能量传递。尽管可以从当前数据中获得对能量注入和耗散量表的限制,但我们表明,在考虑到大气观看,空间平滑和大规模散装流量的影响后,可以确定对VSF的强大约束。在所研究的四个QSO星云中,有一个表现出与Kolmogorov Law的壮观一致的VSF,这是各向同性,同质和不可压缩的湍流。其他三个领域的VSF从大型到小尺度表现出较浅的下降。但是,由于在观察限制数据中,空间尺度的动态范围有限,因此对于这三个星云的VSF斜率无法获得任何约束。对于与Kolmogorov法律一致的QSO星云,我们确定湍流能量级联速率为$ \!0.2 $ cm $^{2} $ s $ s $^{ - 3} $。我们讨论了观察到的VSF在QSO进食和反馈中的含义。
We present the first empirical constraints on the turbulent velocity field of the diffuse circumgalactic medium around four luminous QSOs at $z\!\approx\!0.5$--1.1. Spatially extended nebulae of $\approx\!50$--100 physical kpc in diameter centered on the QSOs are revealed in [OII]$λλ\,3727,3729$ and/or [OIII]$λ\,5008$ emission lines in integral field spectroscopic observations obtained using MUSE on the VLT. We measure the second- and third-order velocity structure functions (VSFs) over a range of scales, from $\lesssim\!5$ kpc to $\approx\!20$--50 kpc, to quantify the turbulent energy transfer between different scales in these nebulae. While no constraints on the energy injection and dissipation scales can be obtained from the current data, we show that robust constraints on the power-law slope of the VSFs can be determined after accounting for the effects of atmospheric seeing, spatial smoothing, and large-scale bulk flows. Out of the four QSO nebulae studied, one exhibits VSFs in spectacular agreement with the Kolmogorov law, expected for isotropic, homogeneous, and incompressible turbulent flows. The other three fields exhibit a shallower decline in the VSFs from large to small scales. However, with a limited dynamic range in the spatial scales in seeing-limited data, no constraints can be obtained for the VSF slopes of these three nebulae. For the QSO nebula consistent with the Kolmogorov law, we determine a turbulence energy cascade rate of $\approx\!0.2$ cm$^{2}$ s$^{-3}$. We discuss the implication of the observed VSFs in the context of QSO feeding and feedback in the circumgalactic medium.