论文标题

NGEHT对地平尺度超级质量黑洞人口研究的期望

Expectations for Horizon-Scale Supermassive Black Hole Population Studies with the ngEHT

论文作者

Pesce, Dominic W., Palumbo, Daniel C. M., Ricarte, Angelo, Broderick, Avery E., Johnson, Michael D., Nagar, Neil M., Natarajan, Priyamvada, Gomez, Jose L.

论文摘要

我们介绍了对下一代事件的超级黑洞(SMBH)数量(SMBH)的估计值,以及估计黑洞``阴影''的估计,以及估计NGGEHT可以期望使用水平分辨出的固定层排放排放排放排放结构来限制的黑洞质量和旋转。在事件地平线望远镜(EHT)协作进行的SMBH积聚流和分析的先前理论研究的基础上,我们为黑洞周围的极化发射结构构建了一个简单的几何模型,我们将该模型的参数与三个物理量相关联。我们在不同假定的源尺寸和通量密度上生成了大量逼真的合成NGEHT数据集,我们估计了从这些数据集中测量的物理参数定义的代理的精确度。在4月的天气条件下,使用观察频率为230〜GHz,我们预计``'''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''可能会衡量$ \ sim $ 50黑洞质量,$ \ sim $ 30黑洞旋转,$ \ sim $ \ sim $ 7黑洞阴影在整个天空中。

We present estimates for the number of supermassive black holes (SMBHs) for which the next-generation Event Horizon Telescope (ngEHT) can identify the black hole ``shadow,'' along with estimates for how many black hole masses and spins the ngEHT can expect to constrain using measurements of horizon-resolved emission structure. Building on prior theoretical studies of SMBH accretion flows and analyses carried out by the Event Horizon Telescope (EHT) collaboration, we construct a simple geometric model for the polarized emission structure around a black hole, and we associate parameters of this model with the three physical quantities of interest. We generate a large number of realistic synthetic ngEHT datasets across different assumed source sizes and flux densities, and we estimate the precision with which our defined proxies for physical parameters could be measured from these datasets. Under April weather conditions and using an observing frequency of 230~GHz, we predict that a ``Phase 1'' ngEHT can potentially measure $\sim$50 black hole masses, $\sim$30 black hole spins, and $\sim$7 black hole shadows across the entire sky.

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