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A NuSTAR study of the 55 ks hard X-ray pulse-phase modulation in the magnetar 4U 0142+61

机译:NuSTAR对4U 0142 + 61磁星中55 ks硬X射线脉冲相位调制的研究

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Archival NuSTAR data of the magnetar 4U 0142+61, acquired in 2014 March for a total time span of 258 ks, were analyzed. This is to reconfirm the 55 ks modulation in the hard X-ray pulse phases of this source, found with a Suzaku observation in 2009 (Makishima et al., 2014, Phys. Rev. Lett., 112, 171102). Indeed, the 10–70 keV X-ray pulsation, detected with NuSTAR at 8.68917 s, was found to be also phase-modulated (at >98% confidence) at the same ∼55 ks period, or half that value. Furthermore, a brief analysis of another Suzaku data set of 4U 0142+61, acquired in 2013, reconfirmed the same 55 ks phase modulation in the 15–40 keV pulses. Thus, the hard X-ray pulse-phase modulation was detected with Suzaku (in 2009 and 2013) and NuSTAR (in 2014) at a consistent period. However, the modulation amplitude varied significantly; A ∼ 0.7 s with Suzaku (in 2009), A ∼ 1.2 s with Suzaku (in 2013), and A ∼ 0.17 s with NuSTAR. In addition, the phase modulation properties detected with NuSTAR differed considerably between the first 1/3 and the latter 2/3 of the observation. In energies below 10 keV, the pulse-phase modulation was not detected with either Suzaku or NuSTAR. These results reinforce the view of Makishima et al. (2014, Phys. Rev. Lett., 112, 171102); the neutron star in 4U 0142+61 keeps free precession, under a slight axial deformation due probably to ultra-high toroidal magnetic fields of ∼1016 G. The wobbling angle of precession should remain constant, but the pulse-phase modulation amplitude varies on time scales of months to years, presumably as asymmetry of the hard X-ray emission pattern around the star's axis changes.
机译:分析了2014年3月采集的,总时间跨度为258 ks的4U 0142 + 61磁星的档案NuSTAR数据。这是为了再次确认该光源在硬X射线脉冲相中的55 ks调制,这是在2009年的Suzaku观测中发现的(Makishima等人,2014,Phys.Rev.Lett。,112,171102)。实际上,用NuSTAR在8.68917 s处检测到的10–70 keV X射线脉动在相同的约55 ks周期内也被调相(置信度> 98%),或该值的一半。此外,对2013年获得的另一个Suzaku数据集4U 0142 + 61的简要分析,再次确认了15-40 keV脉冲中相同的55 ks相位调制。因此,用朱雀(分别在2009年和2013年)和NuSTAR(在2014年)在相同的时间检测到了硬X射线脉冲相位调制。但是,调制幅度变化很大。朱雀(2009年)约为0.7 s,朱雀(2013年)约为1.2 s,NuSTAR约为0.17 s。另外,在观察的前1/3和后2/3之间,用NuSTAR检测到的相位调制特性差异很大。在低于10 keV的能量中,Suzaku或NuSTAR均未检测到脉冲相位调制。这些结果加强了Makishima等人的观点。 (2014,Phys。Rev.Lett。,112,171102); 4U 0142 + 61中的中子星保持自由进动,可能由于〜10的超高环形磁场而在轻微的轴向变形下 16 G.进动的摆动角应保持恒定,但脉冲相位调制幅度会在数月至数年的时间尺度上变化,大概是围绕恒星轴的硬X射线发射图的不对称性发生了变化。

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