论文标题
ALP诱导了对星系簇光子的极化影响
ALP induced polarization effects on photons from galaxy clusters
论文作者
论文摘要
粒子物理学的标准模型的许多扩展,尤其是超弦和超脑理论预测了轴突样颗粒(ALP)的存在。阿尔卑斯山非常难以捉摸,极度轻,主要与光子相互作用。在存在外部磁场的情况下,出现了两种效应:(i)光子 - α振荡和(ii)光子极化状态的变化。由于光子ALP相互作用在天空中产生的各种影响,天体物理背景是获得ALP存在间接证据的最佳机会。到目前为止,人们非常关注光子级振荡,因为它们在非常高的能量上改变了交叉介质的透明度,因此遥远来源的最终光谱表现出过量的磁通量和特征性的振荡行为。迄今为止,已经发现了有关ALP存在的两个提示。但是,光子极化的修饰吸引了较少的兴趣。在本文中,我们在X射线和高能量(HE)频段中对其进行了解决。具体而言,我们分析了线性极化的光子度和由两个星系簇中央区域中产生的光子相互作用引起的极化角度:珀尔修斯和昏迷。我们发现在两个考虑的频段中与传统物理学有很大的不同。我们得出的结论是,通过在HE范围内的COSI(批准发射),E-ASTROGAM和AMEGO等提议的任务(批准发射),更可能检测到ALP诱导的极化效应。尽管如此,IXPE(已经操作)也可以检测到ALP诱导的对光子极化的影响,以及X射线带中提出的EXTP,XL-Calibur,NGXP和XPP的拟议。
Many extensions of the Standard Model of particle physics and in particular superstring and superbrane theories predict the existence of axion-like particles (ALPs). ALPs are very elusive, extremely light and interact primarily with photons. In the presence of an external magnetic field two effects show up: (i) photon-ALP oscillations and (ii) a change of the photon polarization state. The astrophysical context represents the best opportunity to get indirect evidence for the ALP existence thanks to various effects that the photon-ALP interaction produces in the sky. Great attention has been paid so far to photon-ALP oscillations, since they modify the transparency of the crossed media at very high energies and so the final spectra of faraway sources exhibit a flux excess and a characteristic oscillatory behavior. Two hints at the ALP existence have hitherto been discovered. But less interest has been attracted by the modification of the photon polarization. In this paper we address it in the X-ray and in the high energy (HE) bands. Specifically, we analyze the photon degree of linear polarization and the polarization angle induced by the photon-ALP interaction for photons generated in the central region of two galaxy clusters: Perseus and Coma. We find a substantial departure from conventional physics in both considered bands. We conclude that the ALP-induced polarization effects are more likely detectable with the proposed missions like COSI (approved to launch), e-ASTROGAM and AMEGO in the HE range. Still, possible ALP-induced effects on photon polarization could also be detected by IXPE (already operative) and by the proposed eXTP, XL-Calibur, NGXP and XPP in the X-ray band.