冰立方中微子(SIN)候选源的光谱。五. 多波长和中微子数据的建模和解释

X. Rodrigues, M. Karl, P. Padovani, P. Giommi, S. Paiano, Renato Falomo, M. Petropoulou, F. Oikonomou
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引用次数: 0

摘要

据报道,高能量冰立方事件的到达方向与被归类为中高同步辐射峰BL Lacs的伽马射线耀星之间存在着相关性。随后的研究调查了这些光源的光学特性,汇编并分析了公共多波长数据,并根据公共冰立方点源数据对它们各自的中微子发射进行了约束。我们对样本中先前与冰立方警报事件相关的 32 个 BL Lac 天体的公共多波长和中微子点源数据进行了理论解释。我们将单个源的结果结合起来,得出了关于样本的多信使特性和相对论质子所需功率的结论。我们使用开源数值模拟软件进行粒子相互作用建模。我们使用一种新颖独特的方法对模型参数进行了约束,这种方法同时描述了宿主星系的贡献、观测到的同步辐射峰特性、平均多波长通量,并在可能的情况下描述了冰立方点源约束。我们的研究表明,单区跃迁模型可以描述来自所有 32 个冰立方候选星系的多波长宽带通量。在某些情况下,该模型表明强子发射可能贡献了相当一部分伽马射线通量。所需的相对论质子功率从爱丁顿光度的百分之几到十倍不等,与近期文献中的其他低重子类炽星模型相比,能量要求较低。该模型可以描述样本中包括TXS 0506+056在内的大部分伪装BL Lac的68置信度冰立方通量;而对于真正的BL Lac,该模型预测的中微子通量在冰立方灵敏度范围内较低。从物理学角度看,这种区别是由于伪装的BL Lacs存在宽线发射的光子,从而提高了强子相互作用的效率。预测的中微子通量在几 petaelectronvolt 和 100 PeV 之间达到峰值,并与千兆电子伏特、兆电子伏特、X 射线和光学波段的通量成正比。基于这些结果,我们提供了一份最亮中微子发射器的清单,可用于未来针对 10-100 PeV 阶段的搜索。
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The Spectra of IceCube Neutrino (SIN) candidate sources. V. Modeling and interpretation of multiwavelength and neutrino data
A correlation has been reported between the arrival directions of high-energy IceCube events and gamma -ray blazars classified as intermediate- and high-synchrotron-peaked BL Lacs. Subsequent studies have investigated the optical properties of these sources, compiled and analyzed public multiwavelength data, and constrained their individual neutrino emission based on public IceCube point-source data. We provide a theoretical interpretation of public multiwavelength and neutrino point source data for the 32 BL Lac objects in the sample previously associated with an IceCube alert event. We combined the individual source results to draw conclusions regarding the multimesssenger properties of the sample and the required power in relativistic protons. We performed particle interaction modeling using open-source numerical simulation software. We constrained the model parameters using a novel and unique approach that simultaneously describes the host galaxy contribution, the observed synchrotron peak properties, the average multiwavelength fluxes, and, where possible, the IceCube point source constraints. We show that a single-zone leptohadronic model can describe the multiwavelength broadband fluxes from all 32 IceCube candidates. In some cases, the model suggests that hadronic emission may contribute a considerable fraction of the gamma -ray flux. The required power in relativistic protons ranges from a few percent to a factor of ten of the Eddington luminosity, which is energetically less demanding compared to other leptohadronic blazar models in recent literature. The model can describe the 68 confidence level IceCube flux for a large fraction of the masquerading BL Lacs in the sample, including TXS 0506+056; whereas, for true BL Lacs, the model predicts a low neutrino flux in the IceCube sensitivity range. Physically, this distinction is due to the presence of photons from broad line emission in masquerading BL Lacs, which increase the efficiency of hadronic interactions. The predicted neutrino flux peaks between a few petaelectronvolt and 100 PeV and scales positively with the flux in the gigaelectronvolt, megaelectronvolt, X-ray, and optical bands. Based on these results, we provide a list of the brightest neutrino emitters, which can be used for future searches targeting the 10-100 PeV regime.
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