首页> 外文期刊>The Astrophysical Journal. Letters >ROBOTIC REVERBERATION MAPPING OF ARP 151
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ROBOTIC REVERBERATION MAPPING OF ARP 151

机译:ARP 151的机器人重映射

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We present the first results from the Las Cumbres Observatory Global Telescope (LCOGT) Network's Active Galactic Nuclei (AGNs) Key Project, a large program devoted to using the robotic resources of LCOGT to perform time domain studies of active galaxies. We monitored the Seyfert 1 galaxy Arp. 151 (Mrk. 40) for similar to 200 days with robotic imagers and with the FLOYDS robotic spectrograph at Faulkes Telescope North. Arp. 151 was highly variable during this campaign, with V-band light curve variations of similar to 0.3 mag and H beta flux changing by a factor of similar to 3. We measure robust time lags between the V-band continuum and the H alpha, H beta, and H gamma emission lines, with tau(cen) = 13.89(-1.41)(+1.39),7.52(-1.06)(+1.43), and 7.40(-1.32)(+1.50) days, respectively. The lag for the He II lambda 4686 emission line is unresolved. We measure a velocity-resolved lag for the H beta line, which is clearly asymmetric with higher lags on the blue wing of the line that decline to the red, possibly indicative of radial inflow, and is similar in morphology to past observations of the H beta transfer function shape. Assuming a virialization factor of f = 5.5, we estimate a black hole mass of M-BH = 6.2(-1.2)(+1.4) x 10(6)M(circle dot), also consistent with past measurements for this object. These results represent the first step to demonstrate the powerful robotic capabilities of LCOGT for long-term AGN time domain campaigns that human intensive programs cannot easily accomplish. Arp 151 is now one of just a few AGNs where the virial product is known to remain constant against substantial changes in H beta lag and luminosity.
机译:我们展示了Las Cumbres天文台全球望远镜(LCOGT)网络的活动星系核(AGNs)关键项目的第一个结果,该大型项目致力于使用LCOGT的机器人资源来进行活动星系的时域研究。我们监视了塞弗特1星系Arp。 151(Mrk。40),使用机器人成像仪和北福克望远镜的FLOYDS机器人光谱仪进行了约200天的测试。阿普151在该运动期间变化很大,V波段光曲线变化接近0.3 mag,H beta通量变化了约3倍。我们测量了V波段连续体与H alpha,H之间的稳健时滞β和H伽玛发射线,分别具有tau(cen)= 13.89(-1.41)(+ 1.39),7.52(-1.06)(+ 1.43)和7.40(-1.32)(+ 1.50)天。 He II lambda 4686发射谱线的延迟尚未解决。我们测量了H beta线的速度分辨滞后,该滞后明显不对称,且该线的蓝色侧翼上的滞后变大,变为红色,可能表示有径向流入,并且在形态上与H的以往观察结果相似Beta传递函数形状。假设玻璃化因子f = 5.5,我们估计黑洞质量为M-BH = 6.2(-1.2)(+ 1.4)x 10(6)M(圆点),也与该对象的先前测量结果一致。这些结果代表了展示LCOGT强大的机器人功能的第一步,这是人类密集型程序无法轻易完成的长期AGN时域活动。现在,Arp 151是为数不多的AGN,其中已知病毒产物在Hβ滞后和光度发生重大变化时保持恒定。

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