论文标题
3C273的灰尘回响:圆环结构和滞后 - 光度关系
Dust Reverberation of 3C273: torus structure and lag -- luminosity relation
论文作者
论文摘要
我们在2015年至2019年之间在光学(BVRZ)和近红外(JHK)中监视了Z = 0.158类的3C273,其目的是进行灰尘混响映射。考虑到宿主星系和积聚磁盘的贡献,我们在JHK中获得了纯尘埃曲线。 V波段和尘埃曲线之间的跨相关性在tau_cent的热灰尘〜410天的热尘会产生平均的休息板延迟。这比尘埃环半径r_x 〜900光天所预期的要素2要短2。尘埃覆盖因子(CF)约为8%,比预测的,从一半覆盖角度为活性银河核(AGN)的一半覆盖角。我们分析了相关函数的不对称形状,并探索倾斜的双旋碗形尘埃几何形状是否可以将这些发现(Tau_cent,r_x和cf)带入一致的情况。热变化的灰尘发射起源于碗边缘的边缘,小覆盖角40 <theta <45度,我们只看到双孔的近侧。这样的灰尘gloriole具有r_x = 900 +/- 200 ld和倾斜度i = 12度的粉尘非常匹配数据。将3C273的结果与文献的结果进行比较,以减少发光的AGN,我们发现滞后性关系tau propto lpha与α在0.33至0.40之间,比与alpha = 0.5的广泛采用的关系比较平坦。我们解决了新的滞后 - 光度关系的几个解释。
We monitored the z=0.158 quasar 3C273 between 2015 and 2019 in the optical (BVrz) and near-infrared (JHK) with the aim to perform dust reverberation mapping. Accounting for host galaxy and accretion disk contributions, we obtained pure dust light curves in JHK. Cross correlations between the V-band and the dust light curves yield an average rest-frame delay for the hot dust of tau_cent ~ 410 days. This is a factor 2 shorter than expected from the the dust ring radius R_x ~ 900 light days reported from interferometric studies. The dust covering factor (CF) is about 8%, much smaller than predicted from the half covering angle of 45 degree found for active galactic nuclei (AGN). We analyse the asymmetric shape of the correlation functions and explore whether an inclined bi-conical bowl-shaped dust torus geometry could bring these findings (tau_cent, R_x and CF) into a consistent picture. The hot varying dust emission originates from the edge of the bowl rim with a small covering angle 40 < theta < 45 degree, and we see only the near side of the bi-conus. Such a dust gloriole with R_x = 900 +/- 200 ld and an inclination i = 12 degree matches the data remarkably well. Comparing the results of 3C273 with literature for less luminous AGN, we find a lag-luminosity relation tau propto L^alpha with alpha between 0.33 and 0.40, flatter than the widely adopted relation with alpha = 0.5. We address several explanations for the new lag - luminosity relation.