论文标题
通过多频道检测测试重力波传播
Testing gravitational wave propagation with multiband detections
论文作者
论文摘要
黑暗能量(DE)的有效场理论(EFT)(用于以不可知论的方式参数DE的特性)受到重力(GW)的传播速度的测量严重限制。但是,地面干涉仪探测的GW频率位于EFT的典型强耦合量表周围,并且有效描述甚至可能在达到该量表之前就会崩溃。我们讨论了这是如何使适当的紫外线完成场景完成的可能性,即在EFT描述以外的尺度上有效,可以避免对GW速度的当前限制。取而代之的是,较低频率丽莎带中的其他约束将很难逃脱,因为所涉及的能量较低的数量级。通过实施基于GW多频率检测的方法,我们确实表明,丽莎对GW150914样事件的单一联合观察和陆地干涉仪将允许一个人限制光速和重力的速度在$ 10^{-15} $之内。因此,多频道GW观测可以以强大而明确的方式基于DE的EFT来牢固地限制场景。
Effective field theories (EFT) of dark energy (DE) -- built to parameterise the properties of DE in an agnostic manner -- are severely constrained by measurements of the propagation speed of gravitational waves (GW). However, GW frequencies probed by ground-based interferometers lie around the typical strong coupling scale of the EFT, and it is likely that the effective description breaks down before even reaching that scale. We discuss how this leaves the possibility that an appropriate ultraviolet completion of DE scenarios, valid at scales beyond an EFT description, can avoid present constraints on the GW speed. Instead, additional constraints in the lower frequency LISA band would be harder to escape, since the energies involved are orders of magnitude lower. By implementing a method based on GW multiband detections, we show indeed that a single joint observation of a GW150914-like event by LISA and a terrestrial interferometer would allow one to constrain the speed of light and gravitons to match to within $10^{-15}$. Multiband GW observations can therefore firmly constrain scenarios based on the EFT of DE, in a robust and unambiguous way.