论文标题
新的Magnetar SGR J1830-0645爆发
The new magnetar SGR J1830-0645 in outburst
论文作者
论文摘要
Swift Satellite在2020年10月的Swift Satellite探测了短暂的X射线爆发和相关的亮X射线源,并在SGR J1830-0645爆发了新的Magnetar。在迅速的随访X射线观察中检测到〜10.4 s的脉动。我们在这里介绍了XMM-Newton的Swift/Bat Burst和在爆发峰值上进行的核光谱望远镜阵列观测以及随后一个月的Swift/XRT监测活动的分析。爆发是单峰,持续了〜6 ms,并释放出〜5e-9 erg cm^-2(15-50 keV)的通力。吸收的双黑体模型加上可检测到〜25 keV的幂律分量,X射线源在爆发峰处的光谱很好地描述了。未吸收的X射线通量从〜5e-11降低到一个月后(0.3-10 keV)降低至〜2.5e-11 erg cm^-2 s^-1。基于我们的时间分析,我们在极点估计一个偶极磁场〜5.5E14 g,旋转的光度〜2.4E32 ERG S^-1和一个特征年龄〜24 kyr。自旋调制模式在软X射线带中显得高度脉冲,并在较高的能量下变得更光滑。在我们的竞选期间,发现了几次短X射线爆发。在通过萨迪尼亚射电望远镜和帕克斯进行的观察结果中,在无线电频率上没有发现周期性或单脉冲发射的证据。根据磁热的进化模型,SGR J1830-0645的实际年龄接近特征年龄,并且出生时的偶极磁场略大,〜1E15 g。
The detection of a short hard X-ray burst and an associated bright soft X-ray source by the Swift satellite in 2020 October heralded a new magnetar in outburst, SGR J1830-0645. Pulsations at a period of ~10.4 s were detected in prompt follow-up X-ray observations. We present here the analysis of the Swift/BAT burst, of XMM-Newton and the Nuclear Spectroscopic Telescope Array observations performed at the outburst peak, and of a Swift/XRT monitoring campaign over the subsequent month. The burst was single-peaked, lasted ~6 ms, and released a fluence of ~5e-9 erg cm^-2 (15-50 keV). The spectrum of the X-ray source at the outburst peak was well described by an absorbed double-blackbody model plus a power-law component detectable up to ~25 keV. The unabsorbed X-ray flux decreased from ~5e-11 to ~2.5e-11 erg cm^-2 s^-1 one month later (0.3-10 keV). Based on our timing analysis, we estimate a dipolar magnetic field ~5.5e14 G at pole, a spin-down luminosity ~2.4e32 erg s^-1, and a characteristic age ~24 kyr. The spin modulation pattern appears highly pulsed in the soft X-ray band, and becomes smoother at higher energies. Several short X-ray bursts were detected during our campaign. No evidence for periodic or single-pulse emission was found at radio frequencies in observations performed with the Sardinia Radio Telescope and Parkes. According to magneto-thermal evolutionary models, the real age of SGR J1830-0645 is close to the characteristic age, and the dipolar magnetic field at birth was slightly larger, ~1e15 G.