Fundamental significance of tests that quantum dynamics is linear

Thomas F. Jordan
Phys. Rev. A 82, 032103 – Published 9 September 2010

Abstract

Experiments that look for nonlinear quantum dynamics test the fundamental premise of physics that one of two separate systems can influence the physical behavior of the other only if there is a force between them, an interaction that involves momentum and energy. The premise is tested because it is the assumption of a proof that quantum dynamics must be linear. Here, variations of a familiar example are used to show how results of nonlinear dynamics in one system can depend on correlations with the other. Effects of one system on the other, influence without interaction between separate systems, not previously considered possible, would be expected with nonlinear quantum dynamics. Whether it is possible or not is subject to experimental tests together with the linearity of quantum dynamics. Concluding comments and questions consider directions our thinking might take in response to this surprising unprecedented situation.

  • Received 25 February 2010

DOI:https://doi.org/10.1103/PhysRevA.82.032103

©2010 American Physical Society

Authors & Affiliations

Thomas F. Jordan*

  • Department of Physics, University of Minnesota, Duluth, Minnesota 55812, USA

  • *tjordan@d.umn.edu

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Vol. 82, Iss. 3 — September 2010

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