Absence of cosmological constant problem in special relativistic field theory of gravity
arXiv:1406.7713 · doi:10.1016/j.aop.2018.08.016
Abstract
The principles of quantum field theory in flat spacetime suggest that gravity is mediated by a massless particle with helicity , the so-called graviton. It is regarded as textbook knowledge that, when the self-coupling of a particle with these properties is considered, the long-wavelength structure of such a nonlinear theory is fixed to be that of general relativity. However, here we show that these arguments conceal an implicit assumption which is surreptitiously motivated by the very knowledge of general relativity. This is shown by providing a counterexample: we revisit a nonlinear theory of gravity which is not structurally equivalent to general relativity and that, in the non-interacting limit, describes a free helicity graviton. We explicitly prove that this theory can be understood as the result of self-coupling in complete parallelism to the well-known case of general relativity. The assumption which was seen as natural in previous analyses but biased the result is pointed out. This special relativistic field theory of gravity implies the decoupling of vacuum zero-point energies of matter and passes all the known experimental tests in gravitation.
v1: 10 pages; v2: 10 pages, small changes, references added; v3: 22 pages including more detailed discussions, version as accepted for publication
References in corpus (14)
- Transverse Fierz-Pauli symmetry
- Solar system effects in Schwarzschild--de Sitter spacetime
- The Cosmological Constant and the String Landscape
- Bending of Light in Quantum Gravity
- Lectures on the Cosmological Constant Problem
- Light-like Scattering in Quantum Gravity
- A note on classical and quantum unimodular gravity
- Low Energy Theorems of Quantum Gravity from Effective Field Theory
- Cosmological Constant from the Emergent Gravity Perspective
- Bootstrapping gravity: a consistent approach to energy-momentum self-coupling
- Longitudinal diffeomorphisms obstruct the protection of vacuum energy
- Weyl transverse gravity (WTDiff) and the cosmological constant
- Cosmological constant and vacuum energy
- Gauge Symmetry and Consistent Spin-Two Theories
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- Fake Conformal Symmetry in Unimodular Gravity
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- Topological Features of the Quantum Vacuum
- Noether charge formalism for Weyl invariant theories of gravity
- Noether charge formalism for Weyl transverse gravity
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- From spacetime thermodynamics to Weyl transverse gravity
- Multiscalar-metric gravity: cosmological constant screening and emergence of massive-graviton dark components
- Gravity from thermodynamics in vacuum: Lorentz invariance and the role of Bel-Robinson tensor
- Toward a mechanism for the emergence of gravity
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