论文标题
Maxi J1727-203的X射线光谱和时机演变和更好
X-ray Spectral and Timing evolution of MAXI J1727-203 with NICER
论文作者
论文摘要
我们使用更好的观察结果介绍了Maxi J1727-203的整个2018年爆发的详细X射线光谱和可变性研究。爆发持续了大约四个月。 0.3-10 KEV带中的光谱建模显示了软热组和硬化组件的存在。对这些组件的分析表明,最大J1727-203在爆发过程中通过软,中间和硬谱状态进化。我们发现,几乎在整个爆发中都检测到软(盘)组件,温度在最大发光时的范围为〜0.4 keV,到爆发末端附近的〜0.1 keV。硬状态和中间状态的功率谱显示出高达20 Hz的宽带噪声,没有准周期性振荡的证据。我们还研究了该来源0.3-10 KEV的宽带噪声的RMS光谱。我们发现,在大多数爆发中,分数RMS随着能量而增加,除了在硬状态下,分数RMS与能量保持近似恒定。我们还发现,在3 keV以下,分数RMS遵循在> 3 keV的能量上通常观察到的相同趋势,这是从先前对黑洞和中子星的研究中知道的行为。 Maxi J1727-203的光谱和时机演变,即用硬度强度,硬度-RMS和RMS强度图进行了参数,这表明该系统具有黑洞,尽管我们不能排除中子星。
We present a detailed X-ray spectral and variability study of the full 2018 outburst of MAXI J1727-203 using NICER observations. The outburst lasted approximately four months. Spectral modelling in the 0.3-10 keV band shows the presence of both a soft thermal and a hard Comptonised component. The analysis of these components shows that MAXI J1727-203 evolved through the soft, intermediate and hard spectral states during the outburst. We find that the soft (disc) component was detected throughout almost the entire outburst, with temperatures ranging from ~0.4 keV, at the moment of maximum luminosity, to ~0.1 keV near the end of the outburst. The power spectrum in the hard and intermediate states shows broadband noise up to 20 Hz, with no evidence of quasi-periodic oscillations. We also study the rms spectra of the broadband noise at 0.3-10 keV of this source. We find that the fractional rms increases with energy in most of the outburst except during the hard state, where the fractional rms remains approximately constant with energy. We also find that, below 3 keV, the fractional rms follows the same trend generally observed at energies >3 keV, a behaviour known from previous studies of black holes and neutron stars. The spectral and timing evolution of MAXI J1727-203, as parametrised by the hardness-intensity, hardness-rms, and rms-intensity diagrams, suggest that the system hosts a black hole, although we could not rule out a neutron star.