NICER Observations of Thermonuclear Bursts from 4U 1728-34: Detection of Oscillations prior to the Onset of Two Bursts

IF 4.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Z. Funda Bostancı, Tuğba Boztepe, Tolga Güver, Tod E. Strohmayer, Yuri Cavecchi, Ersin Göğüş, Diego Altamirano, Peter Bult, Deepto Chakrabarty, Sebastien Guillot, Gaurava K. Jaisawal, Christian Malacaria, Giulio C. Mancuso, Andrea Sanna, Jean H. Swank
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Abstract

Abstract We present temporal and time-resolved spectral analyses of all the thermonuclear X-ray bursts observed from the neutron star low-mass X-ray binary 4U 1728−34 with NICER from 2017 June to 2019 September. In total, we detected 11 X-ray bursts from the source and performed time-resolved spectroscopy. Unlike some of the earlier results for other bursting sources from NICER, our spectral results indicate that the use of a scaling factor for the persistent emission is not statistically necessary. This is primarily a result of the strong interstellar absorption in the line of sight toward 4U 1728−34, which causes the count rates to be significantly lower at low energies. We also searched for burst oscillations and detected modulations in six different bursts at around the previously known burst oscillation frequency of 363 Hz. Finally, we report the detection of oscillations prior to two bursts at 356 and 359 Hz, respectively. This is the first time in the literature where burst oscillations are detected before the rapid rise in X-ray flux, from any known burster. These oscillations disappear as soon as the burst starts to rise and occur at a somewhat lower frequency than the oscillations we detect during the bursts.
来自4U 1728-34的热核爆发的NICER观测:两个爆发开始前的振荡探测
摘要:本文对2017年6月至2019年9月期间使用NICER观测到的中子星低质量x射线双星4U 1728−34的所有热核x射线爆发进行了时间和时间分辨光谱分析。总的来说,我们从源探测到11个x射线爆发,并进行了时间分辨光谱。不同于之前一些来自NICER的其他爆发源的结果,我们的光谱结果表明,对持续发射使用比例因子在统计上是不必要的。这主要是由于在朝向4U 1728−34的视线中有强烈的星际吸收,这导致计数率在低能量下显着降低。我们还搜索了爆发振荡,并在六个不同的爆发中检测到调制,大约在先前已知的363 Hz的爆发振荡频率。最后,我们报告了分别在356和359 Hz的两次爆发之前检测到的振荡。这是文献中第一次在x射线通量快速上升之前检测到爆发振荡,来自任何已知的爆发。一旦爆发开始上升,这些振荡就会消失,并且发生的频率比我们在爆发期间检测到的振荡要低一些。
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来源期刊
Astrophysical Journal
Astrophysical Journal 地学天文-天文与天体物理
CiteScore
8.40
自引率
30.60%
发文量
2854
审稿时长
1 months
期刊介绍: The Astrophysical Journal is the foremost research journal in the world devoted to recent developments, discoveries, and theories in astronomy and astrophysics.
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