论文标题
Blazar PKS 1502+106的多波长和中微子发射
Multi-wavelength and neutrino emission from blazar PKS 1502+106
论文作者
论文摘要
2019年7月,IceCube实验从强大的Blazar PKS 1502+106的方向检测到了高能中微子。我们使用完全自洽的单区模型对该来源进行多波长和多通信模型,该模型包括典型的平面射频无线电类星体(FSRQ)的外部辐射场的贡献。我们确定了三种不同的活动状态:一个静态状态和两个具有硬态和软伽马射线光谱的耀斑状态。我们发现两个可以描述所有三个状态下的多波长发射的HADRONIC模型:一个链接模型,具有从光峰过程到X射线和伽马射线的效应,以及一个Proton Synchrotron模型,其中从KeV到10 GEV的发射来自Proton Synchrotron radiation。两种模型都预测了与伽马射线和软X射线通量相关的大量中微子通量。我们的结果与基于事件速率统计数据在静止状态期间检测中微子的检测兼容。我们得出的结论是,在明亮的耀斑期间观察到的软X射线光谱强烈表明了望子的贡献,可以将其解释为在源中宇宙射线加速度的附加证据,独立于中微子观察结果。我们发现,可以提出更多的参数,以支持质子同步子方案的leptohadronic模型,例如在静止状态下的能量需求较低。但是,如果在2010年之前没有从源的方向上发现IceCube事件,则对PKS 1502+106的耀斑状态的同一Leptohadronic模型将不受欢迎。
In July of 2019, the IceCube experiment detected a high-energy neutrino from the direction of the powerful blazar PKS 1502+106. We perform multi-wavelength and multi-messenger modeling of this source, using a fully self-consistent one-zone model that includes the contribution of external radiation fields typical of flat-spectrum radio quasars (FSRQs). We identify three different activity states of the blazar: one quiescent state and two flaring states with hard and soft gamma-ray spectra. We find two hadronic models that can describe the multi-wavelength emission during all three states: a leptohadronic model with a contribution from photo-hadronic processes to X-rays and gamma rays, and a proton synchrotron model, where the emission from keV to 10 GeV comes from proton synchrotron radiation. Both models predict a substantial neutrino flux that is correlated with the gamma-ray and soft X-ray fluxes. Our results are compatible with the detection of a neutrino during the quiescent state, based on event rate statistics. We conclude that the soft X-ray spectra observed during bright flares strongly suggest a hadronic contribution, which can be interpreted as additional evidence for cosmic ray acceleration in the source independently of neutrino observations. We find that more arguments can be made in favor of the leptohadronic model vis-a-vis the proton synchrotron scenario, such as a lower energetic demand during the quiescent state. However, the same leptohadronic model would be disfavored for flaring states of PKS 1502+106 if no IceCube events were found from the direction of the source before 2010, which would require an archival search.