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首页> 外文期刊>The Astrophysical Journal. Letters >Lessons from the Short GRB 170817A: The First Gravitational-wave Detection of a Binary Neutron Star Merger
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Lessons from the Short GRB 170817A: The First Gravitational-wave Detection of a Binary Neutron Star Merger

机译:来自短GRB 170817A的课程:二元中子星形合并的第一重力波检测

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The first, long-awaited, detection of a gravitational-wave (GW) signal from the merger of a binary neutron star (NS-NS) system was finally achieved (GW170817) and was also accompanied by an electromagnetic counterpart -the short-duration gamma-ray burst (GRB) 170817A. It occurred in the nearby (D ≈ 40 Mpc) elliptical galaxy NGC 4993 and showed optical, IR, and UV emission from half a day up to weeks after the event, as well as latetime X-ray (at≥8.9 days) and radio (at≥16.4 days) emission. There was a delay of ?t ≈ 1.74 s between the GW merger chirp signal and the prompt GRB emission onset, and an upper limit of θ_(obs) < 28° was set on the viewing angle w.r.t the jet's symmetry axis from the GW signal. In this letter we examine some of the implications of these groundbreaking observations. The delay ?t sets an upper limit on the prompt GRB emission radius, R_γ ? 2c?t (θ_(obs) - θ_0)~2, for a jet with sharp edges at an angle θ_0 < θ_(obs). GRB 170817A's relatively low isotropic equivalent γ-ray energy output may suggest a viewing angle slightly outside the jet's sharp edge, θ_(obs) - θ_0 ~ (0.05 - 0.1)(Γ/100)~(-1), but its peak vF_v photon energy and afterglow emission suggest instead that the jet does not have sharp edges and the prompt emission was dominated by less energetic material along our line of sight, at θ_(obs)? 2θ_0. Finally, we consider the type of remnant that is produced by the NS-NS merger and find that a relatively long-lived (>2 s) massive NS is strongly disfavored, while a hyper-massive NS of lifetime ~1 s appears to be somewhat favored over the direct formation of a black hole.
机译:最终实现了来自二元中子星(NS-NS)系统的合并的第一,期待的重力波(GW)信号(GW170817),并且还伴随着电磁对应 - 短持续时间伽马射线爆裂(GRB)170817A。它发生在附近(D≈40MPC)椭圆星系NGC 4993,并在活动后半天显示光学,IR和UV排放,以及拉脱X射线(≥8.9天)和收音机(≥16.4天)排放。 GW合并啁啾信号和提示GRB发射发作之间存在延迟?T≈1.74s,并且在从GW信号上设定在视角WRT的视角WRT上的θ_(OB)<28°的上限。在这封信中,我们研究了这些突破性观察的一些含义。延迟ΔT设置提示GRB发射半径的上限,R_γ? 2C?T(θ_(OBS) - θ_0)〜2,对于具有尖锐边缘处的射流以角度θ_0<θ_(OBS)。 GRB 170817A的相对低的各向同性等效性γ射线能量输出可以提示跳动尖锐的边缘外部略微略微的视角,θ_(obs) - θ_0〜(0.05-0.1)(γ/ 100)〜(-1),但其峰值Vf_V光子能量和余辉排放表明,射流没有锋利的边缘,并且沿着我们的视线沿θ_(Obs)沿着较低的能量材料,迅速排放占主导地位? 2θ_0。最后,我们考虑由NS-NS合并产生的剩余类型,并发现相对长的(> 2秒)大规模不适用于强烈残疾,而终身〜1秒的超大规模NS似乎是有些人对黑洞的直接形成有利。

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