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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Multimessenger tests of the weak equivalence principle from GW170817 and its electromagnetic counterparts
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Multimessenger tests of the weak equivalence principle from GW170817 and its electromagnetic counterparts

机译:GW170817的弱等价原理的多百合试验及其电磁对应物

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The coincident detection of a gravitational-wave (GW) event GW170817 with electromagnetic (EM) signals (e.g., a short gamma-ray burst SGRB 170817A or a macronova) from a binary neutron star merger within the nearby galaxy NGC 4933 provides a new, multimessenger test of the weak equivalence principle (WEP), extending the WEP test with GWs and photons. Assuming that the arrival time delay between the GW signals from GW170817 and the photons from SGRB 170817A or the macronova is mainly attributed to the gravitational potential of the Milky Way, we demonstrate that the strict upper limits on the deviation from the WEP are Δγ < 1.4 × 10 ~(-3) for GW170817/macronova and Δγ < 5.9 × 10 ~(-8) for GW170817/SGRB 170817A. A much more severe constraint on the WEP accuracy can be achieved (~ 0.9 × 10 ~(-10) ) for GW170817/SGRB 170817A when we consider the gravitational potential of the Virgo Cluster, rather than the Milky Way's gravity. This provides the tightest limit to date on the WEP through the relative differential variations of the γ parameter for two different species of particles. Compared with other multimessenger (photons and neutrinos) results, our limit is 7 orders of magnitude tighter than that placed by the neutrinos and photons from supernova 1987A, and is almost as good as or is an improvement of 6 orders of magnitude over the limits obtained by the low-significance neutrinos correlated with GRBs and a blazar flare.
机译:来自附近的Galaxy NGC 4933内的二进制中子星合并的电磁(EM)信号(例如,带有电磁(EM)信号(例如,短伽马射线爆发SGRB 170817A或MACRONOVA)的重力检测来自BARAXY NGC 4933的二进制中子星合并提供了新的,弱等价原则(WEP)的多百合测试,用GWS和光子扩展了WEP测试。假设来自GW170817的GW信号与来自SGRB 170817A或Macronova的光子之间的到达时间延迟主要归因于银河系的重力电位,我们证明了与WEP偏差的严格的上限是Δγ<1.4 ×10〜(-3)GW170817 / Macronova和Δγ<5.9×10〜(-8)用于GW170817 / SGRB 170817A。当我们考虑处女座集群的重力潜力而不是银河系的重力时,可以实现对WEP准确度的一个更严重的严重约束(〜0.9×10〜(-10)),而不是银河系的重力。这通过两种不同种类颗粒的γ参数的相对差异变化提供了迄今为止迄今为止最有限的限制。与其他多方百料(光子和中微子)结果相比,我们的极限比中微芽和SuperNova 1987a的光子和光子放置的7个级别,并且几乎与所获得的限值相比为6个数量级的改善通过低意义的中微子与GRB和Blazar Flare相关。

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