论文标题

爱因斯坦@家庭发现伽马射线毫秒毫秒Pulsar PSR J2039-5617证实了其预测的雷生本自然

Einstein@Home Discovery of the Gamma-ray Millisecond Pulsar PSR J2039-5617 Confirms Its Predicted Redback Nature

论文作者

Clark, C. J., Nieder, L., Voisin, G., Allen, B., Aulbert, C., Behnke, O., Breton, R. P., Choquet, C., Corongiu, A., Dhillon, V. S., Eggenstein, H. B., Fehrmann, H., Guillemot, L., Harding, A. K., Kennedy, M. R., Machenschalk, B., Marsh, T. R., Sánchez, D. Mata, Mignani, R. P., Stringer, J., Wadiasingh, Z., Wu, J.

论文摘要

费米大面积望远镜伽玛射线源3FGL J2039.6 $ - $ 5618包含一个定期的光学和X射线源,预计将是“ redback”毫秒“毫秒” Pulsar(MSP)二进制系统。但是,结论性的鉴定需要从假定的MSP中检测脉动。为了更好地限制轨道参数的定向搜索伽马射线脉动,我们在2017年和2018年获得了新的光学光曲线,这揭示了伴侣恒星的长期变异性。所得的轨道参数约束用于使用Einstein@Home分布式志愿者计算系统进行靶向的伽马射线脉动搜索。这次搜索发现了2.65毫秒的脉动,证实了源为二进制MSP,现在称为PSR J2039 $ -5617。光学光曲线建模是复杂的,可能是由于伴侣星和长期可变性而不对称加热,但我们发现倾斜度$ i> 60°$,对于低脉冲星质量$ 1.1 m _ {\ odot} <m _ {\ odot} <m _ {\ rm psr} $ m _ {\ odot} $,确认红色分类。伽马射线搏动的时间也显示出轨道时期的显着差异,我们发现这与伴侣恒星中的四极矩变化是一致的,这暗示了对流活性。我们还发现,脉冲通量在轨道时期进行了调节,这可能是由于脉冲杆风与脉冲星风与伴侣恒星的光光子场之间的反向散射所致。

The Fermi Large Area Telescope gamma-ray source 3FGL J2039.6$-$5618 contains a periodic optical and X-ray source that was predicted to be a "redback" millisecond pulsar (MSP) binary system. However, the conclusive identification required the detection of pulsations from the putative MSP. To better constrain the orbital parameters for a directed search for gamma-ray pulsations, we obtained new optical light curves in 2017 and 2018, which revealed long-term variability from the companion star. The resulting orbital parameter constraints were used to perform a targeted gamma-ray pulsation search using the Einstein@Home distributed volunteer computing system. This search discovered pulsations with a period of 2.65 ms, confirming the source as a binary MSP now known as PSR J2039$-$5617. Optical light curve modelling is complicated, and likely biased, by asymmetric heating on the companion star and long-term variability, but we find an inclination $i > 60°$, for a low pulsar mass between $1.1 M_{\odot} < M_{\rm psr} < 1.6 M_{\odot}$ and a companion mass of 0.15--0.22 $M_{\odot}$, confirming the redback classification. Timing the gamma-ray pulsations also revealed significant variability in the orbital period, which we find to be consistent with quadrupole moment variations in the companion star, suggestive of convective activity. We also find that the pulsed flux is modulated at the orbital period, potentially due to inverse Compton scattering between high-energy leptons in the pulsar wind and the companion star's optical photon field.

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