Be x射线双星脉冲星4U 0728-25的持久性

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
N. La Palombara, L. Sidoli, S. Mereghetti, P. Esposito, G. L. Israel
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引用次数: 0

摘要

我们报告了xmm -牛顿望远镜在2023年4月对鲜为人知的银河Be x射线双星4U 0728-25的观测结果。在通量水平(未对吸收进行校正)fX(0.2-12 keV) = 1.7×10−11 erg cm−2 s−1,这意味着未吸收光源的光度LX≃1.3×1035 erg s−1,这是该光源观测到的最小光度。我们测量到的脉冲周期Pspin = 103.301(5) s,比AstroSat在2016年估计的脉冲周期长0.15%。脉冲剖面在所有能量下均表现为宽单峰,对能量的依赖有限,脉冲分数随能量的增加很小。四种不同的发射模型都可以很好地描述时间平均EPIC光谱,要么是单一的非热成分(部分覆盖的幂律或截止幂律),要么是除了非热成分之外还有一个热成分(黑体加上幂律,或碰撞电离气体加上截止幂律)。幂律加黑体模型的热成分具有高温(kTBB≃1.5 keV)和小尺寸(RBB≃240 m)的特征,可与中子星极帽相媲美。沿脉冲相位存在光谱变异,这表明黑体分量的通量变化。这些结果表明,4U 0728-25的亮度水平、通量在长时间尺度上的变化以及光谱性质与大多数持续存在的Be x射线双星非常相似。因此,它可以被认为是这类源的成员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The persistent nature of the Be X-ray binary pulsar 4U 0728-25
We report the results obtained with a XMM–Newton observation, performed in April 2023, of the poorly known Galactic Be X-ray binary pulsar 4U 0728-25. It was revealed at a flux level (not corrected for the absorption) fX(0.2–12 keV) = 1.7×10−11 erg cm−2 s−1, which implies an unabsorbed source luminosity LX≃1.3×1035 erg s−1: this is the minimum luminosity ever observed for this source. We measured a pulse period Pspin = 103.301(5) s, a value ≃0.15% longer than that estimated in 2016 with AstroSat. The pulse profile shows a broad single peak at all energies, with a limited energy dependence and a small increase in the pulsed fraction with energy. The time-averaged EPIC spectrum can be described equally well by four different emission models, either with a single non-thermal component (a partially covered power law or a cut-off power law), or with a thermal component in addition to the non-thermal one (a black body plus a power law, or a collisionally ionised gas plus a cut-off power law). All of them provided an equally good fit and, in the case of the power–law plus black–body model, the thermal component is characterized by a high temperature (kTBB≃1.5 keV) and a small size (RBB≃240 m), comparable with that of the neutron-star polar caps. A spectral variability along the pulse phase is present, which suggests a flux variation of the black-body component. These results show that, for its luminosity level, flux variabilty over long time scales, and spectral properties, 4U 0728-25 is very similar to most of the persistent Be X-ray binaries. Therefore, it can be considered a member of this class of sources.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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