论文标题

Nustar和Parkes观察到旋转驱动状态的过渡毫秒二进制二进制XSS J12270-4859

NuSTAR and Parkes observations of the transitional millisecond pulsar binary XSS J12270-4859 in the rotation-powered state

论文作者

de Martino, D., Papitto, A., Burgay, M., Possenti, A., Zelati, F. Coti, Rea, N., Torres, D. F., Belloni, T. M.

论文摘要

我们报告了在当前旋转驱动的状态下的过渡性毫秒二进制二进制XSS J12270-4859的第一个Nustar观察,并在Parkes望远镜和档案馆的2.5岁的无线电监视中互补。主要在1.4GHz时检测到无线电脉冲星,显示了约4.91小时轨道周期的40%的日食。我们得出了一个新的更新的无线电词汇,以研究3-79KeV光曲线,该曲线显示出显着的轨道调制,分数振幅为28 +/- 3%,这是一个以脉冲星的下且无周期到周期为止或低高度亮丽模式变量的结构化最大值。平均X射线频谱在没有光谱中断的情况下延伸至大约70keV,它通过具有光子指数伽玛= 1.17 +/- 0.08的简单幂律很好地描述了3-79KeV的光度为7.6(-0.8; +3.8; +3.8; +3.8; +3.8; +3.8)x10 x10 ** 32 erg/s,距离为1.37(1.37(-0.15)。能量解析的轨道光曲线表明,调制不是从3keV到25keV的能量,并且未发现的上限约为25kev 10%。与以前的X射线XMM-Newton观测值相比,公共能量范围的观察结果证实,调制幅度在几个月的时间尺度上有所不同,这表明由Pulsar的碰撞风和同伴形成的固定休克的非平稳性贡献。对能量解析调制的检查比以前报道的更详细的检查给出了在3keV以下的Pulsar上方连接下轻度软化的提示,这可能是由于中子星的热发射的贡献。如果延伸到MEV范围内,则插入式冲击发射将在精力充沛的能力上照射供体恒星。

We report on the first NuSTAR observation of the transitional millisecond pulsar binary XSS J12270-4859 during its current rotation-powered state, complemented with a 2.5yr-long radio monitoring at Parkes telescope and archival XMM-Newton and Swift X-ray and optical data. The radio pulsar is mainly detected at 1.4GHz displaying eclipses over about 40% of the 6.91h orbital cycle. We derive a new updated radio ephemeris to study the 3-79keV light curve that displays a significant orbital modulation with fractional amplitude of 28+/-3%, a structured maximum centred at the inferior conjunction of the pulsar and no cycle-to-cycle or low-high-flaring mode variabilities. The average X-ray spectrum, extending up to about 70keV without a spectral break, is well described by a simple power-law with photon index Gamma = 1.17+/-0.08 giving a 3-79keV luminosity of 7.6(-0.8;+3.8)x10**32 erg/s, for a distance of 1.37(-0.15;+0.69)kpc. Energy resolved orbital light curves reveal that the modulation is not energy dependent from 3keV to 25keV and is undetected with an upper limit of about 10% above 25keV. Comparison with previous X-ray XMM-Newton observations in common energy ranges confirms that the modulation amplitudes vary on timescales of a few months, indicative of a non-stationary contribution of the intrabinary shock formed by the colliding winds of the pulsar and the companion. A more detailed inspection of energy resolved modulations than previously reported gives hints of a mild softening at superior conjunction of the pulsar below 3keV, likely due to the contribution of the thermal emission from the neutron star. The intrabinary shock emission, if extending into the MeV range, would be energetically capable alone to irradiate the donor star.

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