论文标题
标量和张量引力波
Scalar and tensor gravitational waves
论文作者
论文摘要
在黑暗能源模型中,标量场与时空几何形状非最小程度地耦合,重力波有望补充标量模式。这种标量波可能与标准张量波相互作用,从而影响其观察到的振幅和极化。因此,了解标量波的作用对于为了设计可靠的重力波探针,对深度相对性的深度和重力的作用至关重要。在本文中,我们在Horndeski理论的子集中彻底研究了标量和张量波的传播,其中张量波以光速传播。我们以标量和度量扰动,艾科纳尔式以及任意标量和时空背景的线性顺序工作。我们对运动方程式进行对角,并识别物理张量模式,这与度量扰动不同。我们发现标量和张量波之间的相互作用通常取决于标量传播速度。如果标量波是腔或准义因素,则相互作用可以忽略不计。在跨膜的情况下,由于波相的不连贯,标量调整的相互作用被有效地抑制。
In dark-energy models where a scalar field is nonminimally coupled to the spacetime geometry, gravitational waves are expected to be supplemented with a scalar mode. Such scalar waves may interact with the standard tensor waves, thereby affecting their observed amplitude and polarization. Understanding the role of scalar waves is thus essential in order to design reliable gravitational-wave probes of dark energy and gravity beyond general relativity. In this article, we thoroughly investigate the propagation of scalar and tensor waves in the subset of Horndeski theories in which tensor waves propagate at the speed of light. We work at linear order in scalar and metric perturbations, in the eikonal regime, and for arbitrary scalar and spacetime backgrounds. We diagonalize the system of equations of motion and identify the physical tensor mode, which differs from the metric perturbation. We find that interactions between scalar and tensor waves generally depend on the scalar propagation speed. If the scalar waves are luminal or quasiluminal, then interactions are negligible. In the subluminal case, scalar-tensor interactions are effectively suppressed due to the incoherence of the wave's phases.