Post-Newtonian Approximation in Maxwell-Like Form
arXiv:0808.2510 · doi:10.1103/PhysRevD.80.124014
Abstract
The equations of the linearized first post-Newtonian approximation to general relativity are often written in "gravitoelectromagnetic" Maxwell-like form, since that facilitates physical intuition. Damour, Soffel and Xu (DSX) (as a side issue in their complex but elegant papers on relativistic celestial mechanics) have expressed the first post-Newtonian approximation, including all nonlinearities, in Maxwell-like form. This paper summarizes that DSX Maxwell-like formalism (which is not easily extracted from their celestial mechanics papers), and then extends it to include the post-Newtonian (Landau-Lifshitz-based) gravitational momentum density, momentum flux (i.e. gravitational stress tensor) and law of momentum conservation in Maxwell-like form. The authors and their colleagues have found these Maxwell-like momentum tools useful for developing physical intuition into numerical-relativity simulations of compact binaries with spin.
v4: Revised for resubmission to Phys Rev D, 6 pages. v3: Reformulated in terms of DSX papers. Submitted to Phys Rev D, 6 pages. v2: Added references. Changed definitions & conventions
References in corpus (4)
Cited by in corpus (24)
- Properties of the binary neutron star merger GW170817
- Visualizing Spacetime Curvature via Frame-Drag Vortexes and Tidal Tendexes I. General Theory and Weak-Gravity Applications
- Gravito-electromagnetic analogies
- Lorentz-violating gravitoelectromagnetism
- Bobbing and Kicks in Electromagnetism and Gravity
- Spacetime dynamics of spinning particles - exact electromagnetic analogies
- Relativistic effective action of dynamical gravitomagnetic tides for slowly rotating neutron stars
- Momentum Flow in Black Hole Binaries: I. Post-Newtonian Analysis of the Inspiral and Spin-Induced Bobbing
- A tale of analogies: gravitomagnetic effects, rotating sources, observers and all that
- A hybrid method for understanding black-hole mergers: head-on case
- Gravitational Magnus effect
- The Mass of the Gravitational Field
- Reference frames in General Relativity and the galactic rotation curves
- Relativistic Positioning System in Perturbed Space-time
- Dynamics of direct impact accretion in degenerate binary systems
- Gravitomagnetism and the significance of the curvature scalar invariants
- Accretion spin-up of the massive component in the neutron star stripping model for short gamma-ray bursts
- Relativistic effects cannot explain galactic dynamics
- Energy-momentum tensor and duality symmetry of linearized gravity in the Fierz formalism
- Maxwell-like picture of General Relativity and its Planck limit
- Sedeonic theory of massless fields
- The analogy of the Lorentz-violating fermion-gravity and fermion photon couplings
- Virial theorem for a cloud of stars obtained from Jeans equations with the second correlation moments
- Frame-dragging: meaning, myths, and misconceptions