论文标题

X射线光谱和来自磁场候选物的极化

X-ray spectra and polarization from magnetar candidates

论文作者

Taverna, Roberto, Turolla, Roberto, Suleimanov, Valery, Potekhin, Alexander Y., Zane, Silvia

论文摘要

据信,磁铁在当前宇宙中拥有最强的磁场($ b \ gtrsim10^{14} $ g),并且对它们在X射线频段中的持续发射的研究提供了前所未有的机会,可以洞悉超强磁场的存在。到目前为止,我们对磁性源的大多数知识都来自光谱分析,该分析允许测试谐振的康普顿散射场景并探测恒星磁层的结构。另一方面,预计从磁表面发出的辐射将是强化的,并且其观察到的极化模式在磁层电荷上都有两种散射的烙印,并在恒星周围的磁化真空中传播时,都会在磁层电荷上添加磁层电荷和QED效应。原定在未来几年飞行的X射线极化器最终将允许利用偏光化可观察物中存储的大量信息。在这里,我们重新审查了评估磁铁持续发射的光偏光特性的问题。与以前的研究不同,可以通过考虑凝结的表面或磁化气氛来适当说明更多的物理表面发射模型。结果用于使用即将进行的成像X射线极化探索器(IXPE)模拟极化观测值。我们发现,X射线极化法将允许检测我们考虑的所有发射模型的QED真空效应,并在它们之间进行区分。

Magnetars are believed to host the strongest magnetic fields in the present universe ($B\gtrsim10^{14}$ G) and the study of their persistent emission in the X-ray band offers an unprecendented opportunity to gain insight into physical processes in the presence of ultra-strong magnetic fields. Up to now, most of our knowledge about magnetar sources came from spectral analysis, which allowed to test the resonant Compton scattering scenario and to probe the structure of the star magnetosphere. On the other hand, radiation emitted from magnetar surface is expected to be strongly polarized and its observed polarization pattern bears the imprint of both scatterings onto magnetospheric charges and QED effects as it propagates in the magnetized vacuum around the star. X-ray polarimeters scheduled to fly in the next years will finally allow to exploit the wealth of information stored in the polarization observables. Here we revisit the problem of assessing the spectro-polarimetric properties of magnetar persistent emission. At variance with previous investigations, proper account for more physical surface emission models is made by considering either a condensed surface or a magnetized atmosphere. Results are used to simulate polarimetric observations with the forthcoming Imaging X-ray Polarimetry Explorer (IXPE). We find that X-ray polarimetry will allow to detect QED vacuum effects for all the emission models we considered and to discriminate among them.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源