论文标题
Parkes Pulsar定时阵列信号的一致性与Nanohertz重力波背景
Consistency of the Parkes Pulsar Timing Array Signal with a Nanohertz Gravitational-wave Background
论文作者
论文摘要
PulsAR时正时阵列实验最近报告了具有菌株光谱指数的常见谱随机过程的有力证据,该过程与纳米赫兹 - 频率引力波背景的预期一致,但具有微不足道但不可算出的空间相关性证据,证明了明确检测所需的空间相关性。但是,Parkes Pulsar定时阵列(PPTA)协作指出,最近分析中使用的相同模型在不存在的模拟中提供了有力证据证明了共同光谱过程。在这项工作中,我们介绍了一种方法,可以区分具有相同幅度的脉冲功率光谱与相似但不同振幅的噪声功率光谱。前者是纳米赫兹引力波背景的空间不相关的脉冲星项的标志,而后者可以代表集合脉冲星噪声特性。我们在模拟数据集中测试方法。我们发现,PPTA脉冲星中报告的常见过程确实与脉冲星术语的光谱特征一致。我们建议这种方法作为有效性测试之一,即应通过的真实天体物理和宇宙学背景以及有关背景的空间不相关组成部分的推论。
Pulsar timing array experiments have recently reported strong evidence for a common-spectrum stochastic process with a strain spectral index consistent with that expected of a nanohertz-frequency gravitational-wave background, but with negligible yet non-zero evidence for spatial correlations required for a definitive detection. However, it was pointed out by the Parkes Pulsar Timing Array (PPTA) collaboration that the same models used in recent analyses resulted in strong evidence for a common-spectrum process in simulations where none is present. In this work, we introduce a methodology to distinguish pulsar power spectra with the same amplitude from noise power spectra of similar but distinct amplitudes. The former is the signature of a spatially uncorrelated pulsar term of a nanohertz gravitational-wave background, whereas the latter could represent ensemble pulsar noise properties. We test the methodology on simulated data sets. We find that the reported common process in PPTA pulsars is indeed consistent with the spectral feature of a pulsar term. We recommend this methodology as one of the validity tests that the real astrophysical and cosmological backgrounds should pass, as well as for inferences about the spatially uncorrelated component of the background.