论文标题
双发性物质动力学的重力辐射
Gravitational radiation from birefringent matter dynamics
论文作者
论文摘要
我们介绍了具有真空双向的物质领域居住的时空居住的二阶重力动力学。该派生遵循协方差重力程序的扰动变体,确保了重力的差异不变性和物质理论和重力的因果关系。随后的该理论的时空分裂揭示了非物理伪像的存在,这些伪影是通过对重力常数施加约束,将其数量从十个减少到7种。在该领域,我们得出了通过循环运动发出的引力辐射。该系统发出的无质量波,与爱因斯坦重力预测的辐射相对应,但也对应于大量波,这些波浪仅在某个角度频率阈值之上产生,而爱因斯坦重力却未知。在该辐射的影响下,以自由下降的测试质量为模型的重力波检测器显示了定量和质量上的新行为。结果是对重力自我偶联的预测,这证明了在重力研究中,尤其是在引力波天文学时代,协变性重力的预测能力。
We present the second-order gravitational dynamics for a spacetime inhabited by matter fields which feature vacuum birefringence. The derivation follows a perturbative variant of the covariant constructive gravity program, ensuring diffeomorphism invariance of gravity and causal compatibility of matter theory and gravity. A subsequent spatio-temporal split of this theory reveals the presence of unphysical artifacts, which are cured by imposing constraints on the gravitational constants, reducing their number from ten to seven. Within this sector, we derive the gravitational radiation emitted by a binary system in circular motion. The system emits massless waves which correspond to the radiation predicted by Einstein gravity, but also massive waves, which are generated only above a certain angular frequency threshold and are unknown to Einstein gravity. A gravitational-wave detector modeled as sphere of freely falling test masses shows quantitatively and qualitatively new behavior under the influence of this radiation. The result is a prediction of gravitational self-coupling from first principles, demonstrating the predictive power of covariant constructive gravity for modified gravity research, especially in the era of gravitational-wave astronomy.