Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1972 · 1.2K citations · 16 references
General RelativityFinite RangeGhost Scalar CouplingLinear ApproximationGravitational PhysicScalar-tensor MixtureGravity EffectsGravitation Theory
No acceptable tensor gravitational theory with arbitrarily long but finite range exists. In linear approximation, the infinite-range limit is a scalar-tensor mixture implying an effective matter-matter coupling different from the strictly infinite-range prediction and contradicted by experiment. Compensation of the scalar requires the admixture of a ghost scalar coupling. In the massive version of the full Einstein theory, (a) there are necessarily six rather than the five tensor degrees of freedom, (b) the energy has no lower bound, (c) the infinite-range limit seems not to exist at all, and (d) lowest-order forces are the same as in the massive linearized theory.
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Mach's Principle and a Relativistic Theory of Gravitation
Carl H. Brans, R. H. Dicke · Physical Review · 1961 · 5.4K citations
Broken symmetries, massless particles and gauge fields
Peter W. Higgs · Physics Letters · 1964 · 2.9K citations
Global Conservation Laws and Massless Particles
G. S. Guralnik, C. R. Hägen, T. W. B. Kibble · Physical Review Letters · 1964 · 2.6K citations · Full text
Spontaneous Symmetry Breakdown without Massless Bosons
Peter W. Higgs · Physical Review · 1966 · 1.8K citations · Full text
To the problem of nonvanishing gravitation mass
A.I. Vainshtein · Physics Letters B · 1972 · 1.7K citations
General Relativity, Modified Gravity, Gravitational Physic +2