An Epistemic model of Quantum State with Ontic Probability Amplitude
Quantum Physics
2014-01-30 v2
Abstract
We first prove that ontological models of the quantum state which are capable of reproducing the Born probability rule and fall in the class of -epistemic models are inconsistent with the Sch{\"o}dinger time evolution. We then model the ontic state space as a complex projective Hilbert space that embeds the projective Hilbert space of quantum mechanics and define a minimalist epistemic state as an average over a set of "hidden states" in the larger space. We show that such a model incorporates probability amplitudes and admits an epistemic interpretation of quantum states. Finally, we prove a second theorem to show that such a model is compatible with locality but ontic models are not.
Keywords
Cite
@article{arxiv.1401.4104,
title = {An Epistemic model of Quantum State with Ontic Probability Amplitude},
author = {Arun Kumar Pati and Partha Ghose and A. K. Rajagopal},
journal= {arXiv preprint arXiv:1401.4104},
year = {2014}
}
Comments
5 pages, No figs