The gravitational field outside a spatially compact stationary source in a generic fourth-order theory of gravity
arXiv:2208.09362 · doi:10.1007/JHEP02(2023)206
Abstract
By applying the symmetric and trace-free formalism in terms of the irreducible Cartesian tensors, the metric for the external gravitational field of a spatially compact stationary source is provided in gravity, a generic fourth-order theory of gravity, where is Ricci scalar, is Ricci square, and is Riemann square. A new type of gauge condition is proposed so that the linearized gravitational field equations of gravity are greatly simplified, and then, the stationary metric in the region exterior to the source is derived. In the process of applying the result, integrations are performed only over the domain occupied by the source. The multipole expansion of the metric potential in gravity for a spatially compact stationary source is also presented. In the expansion, the corrections of gravity to General Relativity are Yukawa-like ones, dependent on two characteristic lengths. Two additional sets of mass-type source multipole moments appear in the corrections and the salient feature characterizing them is that the integrations in their expressions are always modulated by a common radial factor related to the source distribution.
11 pages,accepted by JHEP
References in corpus (9)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Multi-messenger Observations of a Binary Neutron Star Merger
- Dark energy in modified Gauss-Bonnet gravity: late-time acceleration and the hierarchy problem
- Measuring the propagation speed of gravitational waves with LISA
- Massive gravitational waves from the R^2 theory of gravity: production and response of interferometers
- The Newtonian limit of metric gravity theories with quadratic Lagrangians
- The most general fourth order theory of Gravity at low energy
- Energy Bounds in Gravity with Anisotropic Background