arXiv · 1605.05980
Emergent dark energy via decoherence in quantum interactions
Abstract
In this work we consider a recent proposal in which gravitational interactions are mediated via classical information and apply it to a relativistic context. We study a toy model of a quantized Friedman-Robertson-Walker (FRW) universe with the assumption that any test particles must feel a classical metric. We show that such a model results in decoherence in the FRW state that manifests itself as a dark energy fluid that fills the spacetime. Analysis of the resulting fluid, shows the equation of state asymptotically oscillates around the value $w=-1/3$, regardless of the spatial curvature, which provides the bound between accelerating and decelerating expanding FRW cosmologies. Motivated by quantum-classical interactions this model is yet another example of theories with violation of energy-momentum conservation whose signature could have significant consequences for the observable universe.
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Natacha Altamirano, Paulina Corona-Ugalde, Kiran Khosla, Robert B. Mann, Gerard Milburn. 2017-02-27. Emergent dark energy via decoherence in quantum interactions. https://doi.org/10.1088/1361-6382%2Faa6d41
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