arXiv:quant-ph/0102125AbstractReferencesReviewsResources
The no-signaling condition and quantum dynamics
Christoph Simon, Vladimir Buzek, Nicolas Gisin
Published 2001-02-23Version 1
We show that the basic dynamical rules of quantum physics can be derived from its static properties and the condition that superluminal communication is forbidden. More precisely, the fact that the dynamics has to be described by linear completely positive maps on density matrices is derived from the following assumptions: (1) physical states are described by rays in a Hilbert space, (2) probabilities for measurement outcomes at any given time are calculated according to the usual trace rule, (3) superluminal communication is excluded. This result also constrains possible non-linear modifications of quantum physics.
Comments: 4 pages
Journal: Phys. Rev. Lett. 87, 170405 (2001)
Categories: quant-ph
Keywords: quantum dynamics, no-signaling condition, superluminal communication, quantum physics, usual trace rule
Tags: journal article
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