论文标题

关于Ligo和处女座的质量间隙中三个重力波检测的重力透镜解释

On the gravitational lensing interpretation of three gravitational wave detections in the mass gap by LIGO and Virgo

论文作者

Bianconi, Matteo, Smith, Graham P., Nicholl, Matt, Ryczanowski, Dan, Richard, Johan, Jauzac, Mathilde, Massey, Richard, Robertson, Andrew, Sharon, Keren, Ridley, Evan

论文摘要

我们从Ligo-Virgo的第三次运行中搜索可能受重力镜头影响的引力波(GW)事件。重力镜头延迟了GW的到来,并改变了它们的幅度 - 从而偏向推断的祖细胞质量。这将提供对中子恒星和黑洞之间“质量差距”中GW检测的物理理解的解释,这是重力镜头二进制中子星(BNS)合并。我们在Ligo-Virgo的第三次运行中选择了三个GW检测,其中据报道,至少一个组成的紧凑物体在质量间隙中的可能性很高,即低潜伏期 - 即候选BNS合并。我们对位于其天空定位误差峰附近的强大强镜头簇的观察到达到了$ \ rm ab \ simeq25.5 $的灵敏度 - $ z'$ - 带有GMOS Instruments in Gemini telescopes上的gmos仪器,并且没有检测到候选候选镜头光学镜头。我们将最近的Kilonova LightCurve模型与对镜头BNS群体的最新预测以及我们跟进的物体的性质相结合,以表明在我们的观察结果中可以检测到现实的光学对应物。对两个候选人的进一步详细分析表明,它们是相同低质量黑洞合并的一对合理的图像,由局部星系或小型星系镜头镜头。这进一步强调,访问具有低潜伏期的准确质量信息将提高候选BNS选择的效率。

We search for gravitational wave (GW) events from LIGO-Virgo's third run that may have been affected by gravitational lensing. Gravitational lensing delays the arrival of GWs, and alters their amplitude -- thus biasing the inferred progenitor masses. This would provide a physically well-understood interpretation of GW detections in the ''mass gap'' between neutron stars and black holes, as gravitationally lensed binary neutron star (BNS) mergers. We selected three GW detections in LIGO-Virgo's third run for which the probability of at least one of the constituent compact objects being in the mass gap was reported as high with low latency -- i.e. candidate lensed BNS mergers. Our observations of powerful strong lensing clusters located adjacent to the peak of their sky localisation error maps reached a sensitivity $\rm AB\simeq25.5$ in the $z'$-band with the GMOS instruments on the Gemini telescopes, and detected no candidate lensed optical counterparts. We combine recent kilonova lightcurve models with recent predictions of the lensed BNS population and the properties of the objects that we followed up to show that realistic optical counterparts were detectable in our observations. Further detailed analysis of two of the candidates suggests that they are a plausible pair of images of the same low-mass binary black hole merger, lensed by a local galaxy or small group of galaxies. This further underlines that access to accurate mass information with low latency would improve the efficiency of candidate lensed BNS selection.

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