Information-theoretic postulates for quantum theory
arXiv:1203.4516 · doi:10.1007/978-94-017-7303-4_5
Abstract
Why are the laws of physics formulated in terms of complex Hilbert spaces? Are there natural and consistent modifications of quantum theory that could be tested experimentally? This book chapter gives a self-contained and accessible summary of our paper [New J. Phys. 13, 063001, 2011] addressing these questions, presenting the main ideas, but dropping many technical details. We show that the formalism of quantum theory can be reconstructed from four natural postulates, which do not refer to the mathematical formalism, but only to the information-theoretic content of the physical theory. Our starting point is to assume that there exist physical events (such as measurement outcomes) that happen probabilistically, yielding the mathematical framework of "convex state spaces". Then, quantum theory can be reconstructed by assuming that (i) global states are determined by correlations between local measurements, (ii) systems that carry the same amount of information have equivalent state spaces, (iii) reversible time evolution can map every pure state to every other, and (iv) positivity of probabilities is the only restriction on the possible measurements.
17 pages, 3 figures. v3: some typos corrected and references updated. Summarizes the argumentation and results of arXiv:1004.1483. Contribution to the book "Quantum Theory: Informational Foundations and Foils", Springer Verlag (http://www.springer.com/us/book/9789401773027), 2016
References in corpus (8)
- Informational derivation of Quantum Theory
- A derivation of quantum theory from physical requirements
- Ruling Out Multi-Order Interference in Quantum Mechanics
- Existence of an information unit as a postulate of quantum theory
- Reformulating and Reconstructing Quantum Theory
- The Operator Tensor Formulation of Quantum Theory
- Information processing in convex operational theories
- Information Theoretic Axioms for Quantum Theory
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