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Observations of the magnetars 4U 0142+61 and 1E 2259+586 with the MAGIC telescopes

机译:用MAGIC望远镜观察4U 0142 + 61和1E 2259 + 586磁星

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摘要

Magnetars are an extreme, highly magnetized class of isolated neutron stars whose large X-ray luminosity is believed to be driven by their high magnetic field. In this work we study for the first time the possible very high energy gamma-ray emission above 100 GeV from magnetars, observing the sources 4U 0142+61 and 1E 2259+586. We observed the two sources with atmospheric Cherenkov telescopes in the very high energy range (E > 100 GeV). 4U 0142+61 was observed with the MAGIC I telescope in 2008 for ~25 h and 1E 2259+586 was observed with the MAGIC stereoscopic system in 2010 for ~14 h. The data were analyzed with the standard MAGIC analysis software. Neither magnetar was detected. Upper limits to the differential and integral flux above 200 GeV were computed using the Rolke algorithm. We obtain integral upper limits to the flux of 1.52*10^-12cm^-2 s^-1 and 2.7*10^-12cm^-2 s^-1 with a confidence level of 95% for 4U 0142+61 and 1E 2259+586, respectively. The resulting differential upper limits are presented together with X-ray data and upper limits in the GeV energy range.
机译:磁星是一类极端的,高度磁化的孤立中子星,其大X射线光度被认为是由其高磁场驱动的。在这项工作中,我们首次研究了来自4A 0142 + 61和1E 2259 + 586的磁星在100 GeV以上可能产生的非常高能量的伽马射线发射。我们用非常高的能量范围(E> 100 GeV)中的大气Cherenkov望远镜观察到了这两种辐射源。在2008年,使用MAGIC I望远镜观测到4U 0142 + 61持续约25小时,在2010年使用MAGIC立体观测系统观测到1E 2259 + 586持续约14 h。用标准的MAGIC分析软件分析数据。均未检测到磁石。使用Rolke算法计算了200 GeV以上的微分和积分通量的上限。对于4U 0142 + 61和1E,我们获得了通量1.52 * 10 ^ -12cm ^ -2 s ^ -1和2.7 * 10 ^ -12cm ^ -2 s ^ -1的积分上限,置信水平为95% 2259 + 586。得出的差分上限与X射线数据和GeV能量范围内的上限一起显示。

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