论文标题
通过对粉尘连续的干涉测量值测量超大质量的黑洞质量
Towards measuring supermassive black hole masses with interferometric observations of the dust continuum
论文作者
论文摘要
这项工作的重点是活跃的银河核(AGN),以及热尘连续体的大小与宽线区域(BLR)之间的关系。我们发现,使用光学/近红外干涉测量法(OI)测得的连续尺寸大约是通过混响映射(RM)测量的两倍。 OI和RM连续尺寸均与H $β$ BLR大小相关,仅固有散射为0.25 DEX。因此,超级质量黑洞(BHS)的质量可以简单地从灰尘尺寸与宽线宽度和病毒因子结合起来得出。由于这些BH质量的主要不确定性来自病毒因子,因此基于连续的BH质量的准确性与基于宽发射线的RM测量值接近。此外,比RM所需的监控时间较短的时间表可以获得必要的连续测量,并且比用OI解决BLR所需的时间效率更高。这项工作的主要目标是通过首次校准$ r_ \ mathrm {blr} $ - $ r_ \ r_ \ mathrm {d} $关系来证明基于灰尘连续大小的BH质量。当前的限制和警告将详细讨论。预计未来的重力观察将改善基于连续的方法,并有可能在低红移宇宙中测量大量AGN样本的BH质量。
This work focuses on active galactic nuclei (AGNs), and the relation between the sizes of the hot dust continuum and the broad-line region (BLR). We find that the continuum size measured using optical/near-infrared interferometry (OI) is roughly twice that measured by reverberation mapping (RM). Both OI and RM continuum sizes show a tight relation with the H$β$ BLR size with only an intrinsic scatter of 0.25 dex. The masses of supermassive black holes (BHs) can hence be simply derived from a dust size in combination with a broad line width and virial factor. Since the primary uncertainty of these BH masses comes from the virial factor, the accuracy of the continuum-based BH masses is close to those based on the RM measurement of the broad emission line. Moreover, the necessary continuum measurements can be obtained on a much shorter timescale than those required monitoring for RM, and are also more time efficient than those needed to resolve the BLR with OI. The primary goal of this work is to demonstrate measuring the BH mass based on the dust continuum size with our first calibration of the $R_\mathrm{BLR}$-$R_\mathrm{d}$ relation. The current limitation and caveats are discussed in detail. Future GRAVITY observations are expected to improve the continuum-based method and have the potential to measure BH masses for a large sample of AGNs in the low-redshift Universe.