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The Radio-bright Accreting Millisecond X-Ray Pulsar IGR J17591-2342

机译:无线电亮毫升X射线Pulsar IGR J17591-2342

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IGR J17591?2342 is a 527 Hz accreting millisecond X-ray pulsar that was discovered in outburst in 2018 August. In this Letter, we present quasi-simultaneous radio and X-ray monitoring of this source during the early part of the outburst. IGR J17591?2342 is highly absorbed in X-rays, with an equivalent hydrogen absorption along the line of sight, NH, of ≈4.4×10~(22) cm~(?2),where the Galactic column density is expected to be ≈1–2×10~(22) cm~(?2). The high absorption suggests that the source is either relatively distant (>6 kpc), or that the X-ray emission is strongly absorbed by material local to the system. Radio emission detected by the Australia Telescope Compact Array shows that, for a given X-ray luminosity and for distances greater than 3 kpc, this source was exceptionally radio-loud when compared to other accreting neutron stars in outburst (LX>10~(33) erg s~(?1)). For most reasonable distances, IGR J17591?2342 appeared as radio luminous as actively accreting, stellar-mass black hole X-ray binaries.
机译:IGRJ17591?2342是527 Hz ACCRETING毫秒X射线脉冲,于2018年8月在爆发中被发现。在这封信中,我们在爆发的早期部分出现了对这个来源的准同声电台和X射线监测。 IGRJ17591?2342在X射线中高度吸收,沿着视线的等效氢吸收,NH,NH,≈4.4×10〜(22)cm〜(α2),其中预期银河系密度是≈1-2×10〜(22)cm〜(?2)。高吸收表明,源是相对较远的(> 6kPc),或者X射线发射被系统局部的材料强烈吸收。澳大利亚望远镜紧凑型阵列检测到的无线电发射表明,对于给定的X射线光度和大于3kpc的距离,与突出(Lx> 10〜(33 )ERG S〜(?1))。对于最合理的距离,iGrJ17591?2342出现为无线电发光,作为主动增强,恒星 - 质量黑洞X射线二进制文件。

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