Indexed metadata

The theory of gravitation in Hamiltonian form

Paul Adrien Maurice Dirac

Source record

Source: Crossref

Published: Aug 19, 1958

DOI: 10.1098/rspa.1958.0142

Open original source ↗

Source abstract

Abstract The author's generalized procedure for putting a theory into Hamiltonian form is applied to Einstein’s theory of gravitation. It is shown that one can make a change in the action density, not affecting the equations of motion, which causes four of the ten degrees of freedom associated with the ten gµν to drop out of the Hamiltonian formalism. This simplification can be achieved only at the expense of abandoning four-dimensional symmetry. In the weak field approximation one can make a Fourier resolution of the field quantities, and one then gets a clean separation of those degrees of freedom whose variables depend on the system of co-ordinates from those whose variables do not. There are four of the former and two of the latter for each Fourier component. The two latter correspond to gravitational waves with two independent states of polarization. One of the four former is responsible for the Newtonian attraction between masses and also gives a negative gravitational self-energy for each mass.

Evidence graph

No public relationships recorded yet.

Integrity note: This page is a factual metadata record created by deterministic ingestion. It is not a claim that the work moves a mathematical frontier or has been independently verified.