论文标题

多普勒增强随机重力波背景

Doppler boosting the stochastic gravitational wave background

论文作者

Cusin, Giulia, Tasinato, Gianmassimo

论文摘要

随机引力波背景(SGWB)的保证特征之一是探测器相对于SGWB源的其余框架引起的多普勒各向异性的存在。我们指出,如果SGWB的特征在频率的函数或相当大的固有各向异性的函数中,可以扩增运动学效应。因此,我们研究了使用多普勒效应作为SGWB频率曲线的互补探针的可能性。为此,我们在多极空间中起作用,并研究运动学调制和异常对GW能量密度参数及其角功率谱的影响。我们开发了Fisher的预测分析,并讨论了通过使用未来检测器网络控制运动学诱导各向异性的参数的前景。作为案例研究,我们将框架应用于具有频率恒定斜率的背景组件,可能通过基于地面的干涉仪网络可检测到。在这个具体示例中,我们表明,具有爱因斯坦望远镜和宇宙资源管理器网络的运动学各向异性的测量将使我们能够以约16 $ \%$的精度来限制光谱形状。最后,我们确定了宇宙学和天体物理情景,其中运动范围通过当前和将来的GW实验探测的频率范围增强。

One of the guaranteed features of the stochastic gravitational wave background (SGWB) is the presence of Doppler anisotropies induced by the motion of the detector with respect to the rest frame of the SGWB source. We point out that kinematic effects can be amplified if the SGWB is characterised by large tilts in its spectrum as a function of frequency, or by sizeable intrinsic anisotropies. Hence we examine the possibility to use Doppler effects as complementary probes of the SGWB frequency profile. For this purpose we work in multipole space, and we study the effect of kinematic modulation and aberration on the GW energy density parameter and on its angular power spectrum. We develop a Fisher forecast analysis and we discuss prospects for constraining parameters controlling kinematically induced anisotropies with future detector networks. As a case study, we apply our framework to a background component with constant slope in frequency, potentially detectable by a network of future ground-based interferometers. For this specific example, we show that a measurement of kinematic anisotropies with a network of Einstein Telescope and Cosmic Explorer will allow us to constrain the spectral shape with a precision of about 16$\%$. Finally, we identify cosmological and astrophysical scenarios where kinematic effects are enhanced in frequency ranges probed by current and future GW experiments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源