论文标题

Maveric调查:球状群集NGC 6397的ATCA无线电成像中的隐藏脉冲星和黑洞候选者

The MAVERIC survey: A hidden pulsar and a black hole candidate in ATCA radio imaging of the globular cluster NGC 6397

论文作者

Zhao, Yue, Heinke, Craig O., Tudor, Vlad, Bahramian, Arash, Miller-Jones, James C. A., Sivakoff, Gregory R., Strader, Jay, Chomiuk, Laura, Shishkovsky, Laura, Maccarone, Thomas J., Marcano, Manuel Pichardo, Gelfand, Joseph D.

论文摘要

使用澳大利亚望远镜紧凑型阵列(ATCA)和档案Chandra数据的16.2 HR无线电观察,我们发现了$>5σ$>5σ$无线电对应于4个已知和3个新的X射线radius($ r_ \ r_ \ mathrm {h} $)的X射线源($ r_ \ mathrm {h} $),涉及银河系群ngc 6397。是一个陡峭的光谱($s_ν\ proptoν^α$; $α= -2.0^{+0.4} _ { - 0.5} $)无线电源,其5.5 GHz通量密度为$ 54.7 \ pm 4.3〜 \ mathrm {μjy} $。我们认为,U18很可能是一个“隐藏”的MSP,它被等离子体持续隐藏,因为脉冲星和伴侣恒星之间的风之间的碰撞震惊了。到目前为止,无线电搏动的非探测可能是这种震惊的风中散射增强的结果。另一方面,我们观察到已知的MSP PSR J1740-5340(U12)的5.5 GHz通量,在1.4 GHz Eclipse的时期内降低了$> 2.8 $的倍,这表明无线电通量在其冲击风中吸收。如果U18确实是脉动散射的脉冲星,我们注意到Eclipse中的U12磁通量的降低,这对同一射频的两种不同的日食机制进行了鲜明的对比。除U12和U18外,我们还发现了其他5个Chandra X射线源的无线电协会,其中4个可能是背景星系。最后一个显示强大的H $α$可变性的U97是神秘的。它可能是静止的黑洞低质量X射线二进制,或者更不寻常。

Using a 16.2 hr radio observation by the Australia Telescope Compact Array (ATCA) and archival Chandra data, we found $>5σ$ radio counterparts to 4 known and 3 new X-ray sources within the half-light radius ($r_\mathrm{h}$) of the Galactic globular cluster NGC 6397. The previously suggested millisecond pulsar (MSP) candidate, U18, is a steep-spectrum ($S_ν\propto ν^α$; $α=-2.0^{+0.4}_{-0.5}$) radio source with a 5.5 GHz flux density of $54.7\pm 4.3~\mathrm{μJy}$. We argue that U18 is most likely a "hidden" MSP that is continuously hidden by plasma shocked at the collision between the winds from the pulsar and companion star. The nondetection of radio pulsations so far is probably the result of enhanced scattering in this shocked wind. On the other hand, we observed 5.5 GHz flux of the known MSP PSR J1740-5340 (U12) to decrease by a factor of $>2.8$ during epochs of 1.4 GHz eclipse, indicating that the radio flux is absorbed in its shocked wind. If U18 is indeed a pulsar whose pulsations are scattered, we note the contrast with U12's flux decrease in eclipse, which argues for two different eclipse mechanisms at the same radio frequency. In addition to U12 and U18, we also found radio associations for 5 other Chandra X-ray sources, four of which are likely background galaxies. The last, U97, which shows strong H$α$ variability, is mysterious; it may be either a quiescent black hole low-mass X-ray binary, or something more unusual.

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