论文标题

形成快速旋转黑洞的频道 - 中子星二进制合并作为多通信源

A Channel to Form Fast-spinning Black Hole--Neutron Star Binary Mergers as Multi-messenger Sources

论文作者

Hu, Rui-Chong, Zhu, Jin-Ping, Qin, Ying, Zhang, Bing, Liang, En-Wei, Shao, Yong

论文摘要

在成功检测重力波(GW)信号及其相关的电磁(EM)同行之后,高度期望将Neutron Star-Black Hole(NSBH)合并成为下一种多部分 - 往返源。但是,尽管在GW第三次观察过程中发现了NSBH合并的几个候选者,但尚未确定这些来源的确认EM对应物。最合理的解释是,这些NSBH合并候选者正在暴跌事件,这主要是因为基于GW的观察结果,主要BHS的预测旋转接近零。考虑到NSS​​可以很容易受到具有较高投影对齐旋转的BHS的潮汐破坏,我们研究了一个进化通道,形成具有快速旋转BHS的NSBH二进制文件,BH质量和自旋的特性及其相关的潮汐破坏概率。我们发现,如果NS首先出生,那么伴随的氦星将有效地旋转,因此最终会形成快速旋转的BHS。如果BHS在出生时没有获得大量的出生踢球,那么这些可以在哈勃时间内合并的NSBH二进制文件将与预计的Aligned Spins $χ_{Z} \ GTRSIM0.8 $ and BHS与BHS相关,因此,当然可以允许Tidal Distal Disbion发生。即使考虑了一小部分NSBH二进制文件,也考虑了重要的BH踢,预计的BHS的对齐旋转为$χ_z\ gtrsim0.2 $。除非NSS非常大,否则这些系统仍然可以破坏事件。因此,NS首发的NSBH合并将有望有希望的多通间源。我们讨论与这些系统相关的各种潜在EM对应物及其在即将到来的第四个观察过程中的可检测性。

After the successful detection of a gravitational-wave (GW) signal and its associated electromagnetic (EM) counterparts from GW170817, neutron star--black hole (NSBH) mergers have been highly expected to be the next type of multi-messenger source. However, despite the detection of several of NSBH merger candidates during the GW third observation run, no confirmed EM counterparts from these sources have been identified. The most plausible explanation is that these NSBH merger candidates were plunging events mainly because the primary BHs had near-zero projected aligned-spins based on GW observations. In view that NSs can be easily tidally disrupted by BHs with high projected aligned-spins, we study an evolution channel to form NSBH binaries with fast-spinning BHs, the properties of BH mass and spin, and their associated tidal disruption probability. We find that if the NSs are born firstly, the companion helium stars would be tidally spun up efficiently, and would thus finally form fast-spinning BHs. If BHs do not receive significant natal kicks at birth, these NSBH binaries that can merge within the Hubble time would have BHs with the projected aligned-spins $χ_{z}\gtrsim0.8$ and, hence, can certainly allow tidal disruption to happen. Even if significant BH kicks are considered for a small fraction of NSBH binaries, the projected aligned-spins of BHs are $χ_z\gtrsim0.2$. These systems can still be disrupted events unless the NSs are very massive. Thus, NS-first-born NSBH mergers would be promising multi-messenger sources. We discuss various potential EM counterparts associated with these systems and their detectability in the upcoming fourth observation run.

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