Can Dark Energy emerge from quantum effects in compact extra dimension ?
arXiv:1301.1763 · doi:10.1051/0004-6361/201321060
Abstract
The origin of the observed acceleration of the expansion of the universe is a major problem of modern cosmology and theoretical physics. Simple estimations of the contribution of vacuum to the density energy of the universe in quantum field theory are known to lead to catastrophic large values compared to observations. Such a contribution is therefore generally not regarded as a viable source for the acceleration of the expansion. In this letter we propose that the vacuum contribution actually provides a small positive value to the density energy of the universe. The underlying mechanism is a manifestation of the quantum nature of the gravitational field, through a Casimir-like effect from an additional compact dimension of space. A key ingredient is to assume that only modes with wavelength shorter than the Hubble length contribute to the vacuum. Such a contribution gives a positive energy density, has a Lorentz invariant equation of state in the usual 4D spacetime and hence can be interpreted as a cosmological constant. Its value agrees with observations for a radius of a 5th extra dimension given by m. This implies a modification of the gravitational inverse square law around this scale, close but below existing limits from experiments testing gravity at short range.
To be published in A\&A
References in corpus (7)
- Dark Energy and the Accelerating Universe
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Everything You Always Wanted To Know About The Cosmological Constant Problem (But Were Afraid To Ask)
- Novel constraints on light elementary particles and extra-dimensional physics from the Casimir effect
- Uses of zeta regularization in QFT with boundary conditions: a cosmo-topological Casimir effect
- Scrutinizing the Cosmological Constant Problem and a possible resolution
- A Naturally Minute Quantum Correction to the Cosmological Constant Descended from the Hierarchy
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- Schwinger's Approach to Einstein's Gravity and Beyond
- Topological Casimir effect for fermionic condensate in AdS spacetime with compact dimensions