Basic randomness of nature and ether-drift experiments
arXiv:1106.1277 · doi:10.1016/j.chaos.2011.09.006
Abstract
We re-consider the idea that quantum fluctuations might reflect the existence of an 'objective randomness', i.e. a basic property of the vacuum state which is independent of any experimental accuracy of the observations or limited knowledge of initial conditions. Besides being responsible for the observed quantum behaviour, this might introduce a weak, residual form of `noise' which is intrinsic to natural phenomena and could be important for the emergence of complexity at higher physical levels. By adopting Stochastic Electro Dynamics as a heuristic model, we are driven to a picture of the vacuum as a form of highly turbulent ether, which is deep-rooted into the basic foundational aspects of both quantum physics and relativity, and to search for experimental tests of this scenario. An analysis of the most precise ether-drift experiments, operating both at room temperature and in the cryogenic regime, shows that, at present, there is some ambiguity in the interpretation of the data. In fact the average amplitude of the signal has precisely the magnitude expected, in a 'Lorentzian' form of relativity, from an underlying stochastic ether and, as such, might not be a spurious instrumental effect. This puzzle, however, should be solved in a next future with the use of new cryogenically cooled optical resonators whose stability should improve by about two orders of magnitude. In these new experimental conditions, the persistence of the present amplitude would represent a clean evidence for the type of random vacuum we are envisaging.
22 pages, 2 figures; revised version accepted for publication on Chaos, Solitons and Fractals
References in corpus (10)
- Rotating optical cavity experiment testing Lorentz invariance at the 10^{-17} level
- Relativity tests by complementary rotating Michelson-Morley experiments
- Noise-enhanced classical and quantum capacities in communication networks
- Testing Lorentz invariance by use of vacuum and matter filled cavity resonators
- From Knowledge, Knowability and the Search for Objective Randomness to a New Vision of Complexity
- Contribution from stochastic electrodynamics to the understanding of quantum mechanics
- Is the physical vacuum a preferred frame ?
- Testing Lorentz Invariance by Comparing Light Propagation in Vacuum and Matter
- Precision tests with a new class of dedicated ether-drift experiments
- Linearized Turbulent Fluid Flow as an Analog Model for Linearized General Relativity (Gravitoelectromagnetism)
Cited by in corpus (5)
- On the numerical simulation of propagation of micro-level inherent uncertainty for chaotic dynamic systems
- The classical ether-drift experiments: a modern re-interpretation
- The CMB, preferred reference system and dragging of light in the earth frame
- Michelson-Morley Experiments: at the crossroads of Relativity, Cosmology and Quantum Physics
- Quantum Non-Locality and the CMB: what Experiments say