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首页> 外文期刊>The Astrophysical journal >The NANOGrav 11 Year Data Set: Pulsar-timing Constraints on the Stochastic Gravitational-wave Background
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The NANOGrav 11 Year Data Set: Pulsar-timing Constraints on the Stochastic Gravitational-wave Background

机译:NANOGrav 11年数据集:随机引力波背景下的脉冲正时约束

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摘要

We search for an isotropic stochastic gravitational-wave background (GWB) in the newly released 11?year data set from the North American Nanohertz Observatory for Gravitational Waves (NANOGrav). While we find no evidence for a GWB, we place constraints on a population of inspiraling supermassive black hole (SMBH) binaries, a network of decaying cosmic strings, and a primordial GWB. For the first time, we find that the GWB constraints are sensitive to the solar system ephemeris (SSE) model used and that SSE errors can mimic a GWB signal. We developed an approach that bridges systematic SSE differences, producing the first pulsar-timing array (PTA) constraints that are robust against SSE errors. We thus place a 95% upper limit on the GW-strain amplitude of A GWB?×?10?15 at a frequency of f?=?1?yr?1 for a fiducial f ?2/3 power-law spectrum and with interpulsar correlations modeled. This is a factor of ~2 improvement over the NANOGrav nine-year limit calculated using the same procedure. Previous PTA upper limits on the GWB (as well as their astrophysical and cosmological interpretations) will need revision in light of SSE systematic errors. We use our constraints to characterize the combined influence on the GWB of the stellar mass density in galactic cores, the eccentricity of SMBH binaries, and SMBH–galactic-bulge scaling relationships. We constrain the cosmic-string tension using recent simulations, yielding an SSE-marginalized 95% upper limit of Gμ?×?10?11—a factor of ~2 better than the published NANOGrav nine-year constraints. Our SSE-marginalized 95% upper limit on the energy density of a primordial GWB (for a radiation-dominated post-inflation universe) is ΩGWB(f) h 2?×?10?10.
机译:我们在来自北美纳米赫兹引力波观测站(NANOGrav)的最新发布的11年数据集中搜索各向同性随机重力波背景(GWB)。虽然我们没有找到有关GWB的证据,但我们对鼓舞人心的超大质量黑洞(SMBH)二进制文件,衰变的宇宙弦网络和原始GWB设置了限制。第一次,我们发现GWB约束对所使用的太阳系星历(SSE)模型敏感,并且SSE错误可以模拟GWB信号。我们开发了一种弥合系统的SSE差异的方法,从而产生了第一个对SSE错误具有鲁棒性的脉冲星定时阵列(PTA)约束。因此,对于基准f?2/3幂律谱,当频率为f?=?1?yr?1时,我们对A GWB?×?10?15的GW应变振幅设置了95%的上限。脉冲间相关建模。这是使用相同程序计算得出的NANOGrav九年限制的〜2改善因素。鉴于SSE系统误差,先前对GWB的PTA上限(及其天体和宇宙学解释)将需要修订。我们用我们的约束来表征银河系核心恒星质量密度对GWB的综合影响,SMBH双星的偏心率以及SMBH-银河系-膨胀尺度关系。我们使用最新的模拟方法来约束宇宙弦的张力,得出SSE边缘化的95%的Gμ?×?10?11上限-比已发布的NANOGrav九年限制好约2倍。我们对原始GWB的能量密度的SSE极限95%上限(对于以辐射为主的后膨胀宇宙)为ΩGWB(f)h 2?×?10?10。
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