论文标题

搜索AGN伽马射线能量光谱中的光子alps混合效应

Searching for photon-ALPs mixing effects in AGN gamma-ray energy spectra

论文作者

Yu, Qixin, Horns, Dieter

论文摘要

在外部磁场中传播的高能量伽马射线可能会转换为轴突样颗粒(ALP)。在这种情况下,观察到的伽马射线光谱是通过所得能量依赖性转换概率来改变的。在这项研究中,我们使用了在\ textit {fermi} -lat观测值10年中记录的20个半流性伽马射线源的能量光谱。我们根据可能性比率定义了一个测试统计量,以测试没有光子 - alps耦合模型的光谱模型的假设。转换概率是针对质量的固定值和伪量表粒子的固定值和两个光子耦合计算的,而外部磁场的特征是附加的自由参数长度尺度$ s $和平均场强$ b $。作为一致性检查,为了扩展分析以包含非常高的能量伽马射线数据,使用$χ^2 $方法定义了另一个测试统计信息。我们发现,在20个来源中,有18个具有良好的拟合度,特别是对于Markarian 〜421和NGC〜1275,有了显着的改进,在可能性分析中具有光子alps耦合的假设。来源的测试统计数据合并,显着性估计为$ 5.3〜σ $(在所有来源的本地最大值中汇总的测试统计信息)和$ 6.0〜σ $(Global Maxima)。显着性是从零假设下的专用模拟中估计的。 $ b $和$ s $的本地最佳拟合值属于相关天体物理环境中存在的大型磁场的范围。

High energy gamma-rays propagating in external magnetic fields may convert into axion-like particles (ALPs). In this case, the observed gamma-ray spectra are modified by the resulting energy-dependent conversion probability. In this study, we use the energy spectra of 20 extra-galactic gamma-ray sources recorded during 10 years of \textit{Fermi}-LAT observations. We define a test statistics based upon the likelihood ratio to test the hypothesis for a spectral model without vs. a model with photon-ALPs coupling. The conversion probability is calculated for fixed values of the mass and two-photon coupling of the pseudo-scalar particle while the external magnetic field is characterized by the additional free parameters length scale $s$ and average field strength $B$. As a consistency check and in order to extend the analysis to include very high energy gamma-ray data, another test statistics is defined with the $χ^2$ method. We find for 18 of the 20 sources a favorable fit, particularly for Markarian~421 and NGC~1275 a significant improvement, with the hypothesis of photon-ALPs coupling in likelihood analysis. The test statistics of the sources are combined and the significance has been estimated $5.3~σ$ (test statistics summed in local maxima of all sources) and $6.0~σ$ (global maxima). The significance is estimated from dedicated simulations under the null hypotheses. The locally best-fitting values of $B$ and $s$ fall into the range that is expected for large scale magnetic fields present in relevant astrophysical environments.

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