论文标题

使用XMM-Newton

Peculiar temporal and spectral features in highly obscured HMXB pulsar IGR J16320-4751 using XMM-Newton

论文作者

Varun, Iyer, Nirmal, Paul, Biswajit

论文摘要

IGR J16320-4751是一个高度模糊的HMXB源,其中包含一个非常慢的中子星($ p_ {spin} \ sim1300 $ sec),以$ \ sim $ 9天绕其Supergiant Companion Star Orberber绕其超级伴侣星。它显示高柱密度($ n_ {h} \ sim2-5 \ times10^{23} $ $ $ $ cm^{ - 2} $)在频谱中,尽管不是黯然失色的来源,但沿轨道的通量发生了很大的变化。我们报告了对该来源的档案XMM-Newton观察到的一些特殊的时序和光谱特征,包括单个轨道期间进行的8个观测值。 PULSAR从不同的观察值,耀斑的活动,计数率突然变化,脉动停止和可变脉冲曲线的平均计数速率方面显示出较大的时间变化,即使从分开几天的观测值中也有可变的脉冲曲线。我们注意到,IGR J16320-4751是少数来源之一,在光曲线中暂时停止脉动。围绕缺失脉冲段的时间分辨的光谱分析表明,可变吸收在该来源中得出了这种行为。能量分辨的脉冲曲线在6.2-6.6 keV频段中具有fe k $_α$光子的部分贡献,显示出强脉冲。但是,更系统的分析揭示了该频段中Fe K $_α$光子的贡献的平坦脉冲轮廓,这意味着负责该发射的材料的对称分布。在XMM-Newton观测的11个光谱中,有6个keV低于3 keV。

IGR J16320-4751 is a highly obscured HMXB source containing a very slow neutron star ($P_{spin}\sim1300$ sec) orbiting its supergiant companion star with a period of $\sim$9 days. It shows high column density ($N_{H}\sim2-5\times10^{23}$ $cm^{-2}$) in the spectrum, and a large variation in flux along the orbit despite not being an eclipsing source. We report on some peculiar timing and spectral features from archival XMM-Newton observation of this source including 8 observations taken during a single orbit. The pulsar shows large timing variability in terms of average count rate from different observations, flaring activity, sudden changes in count rate, cessation of pulsation, and variable pulse profile even from observations taken a few days apart. We note that IGR J16320-4751 is among a small number of sources for which this temporary cessation of pulsation in the light curve has been observed. A time-resolved spectral analysis around the segment of missing pulse shows that variable absorption is deriving such behavior in this source. Energy resolved pulse profiles in the 6.2-6.6 keV band which has a partial contribution from Fe K$_α$ photons, show strong pulsation. However, a more systematic analysis reveals a flat pulse profile from the contribution of Fe K$_α$ photons in this band implying a symmetric distribution for the material responsible for this emission. Soft excess emission below 3 keV is seen in 6 out of 11 spectra of XMM-Newton observations.

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