A general framework for phase and interference
arXiv:1304.5977 · doi:10.1088/1367-2630/15/9/093044
Abstract
Phase plays a crucial role in many quantum effects including interference. Phase is normally defined in terms of complex numbers that appear when representing quantum states as complex vectors. Here we give an operational definition whereby phase is instead defined in terms of measurement statistics. Our definition is phrased in terms of the operational framework known as generalised probabilistic theories, or the convex framework. The definition makes it possible to ask whether other theories in this framework can also have phase. We apply our definition to investigate phase and interference in several example theories: classical probability theory, a version of Spekken's toy model, quantum theory, and box-world. We find that phase is ubiquitous; any non-classical theory can be said to have non-trivial phase dynamics.
12 pages, 3 appendices, 4 figures, 3 tables
References in corpus (6)
- A derivation of quantum theory from physical requirements
- Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy
- Resonances in open quantum maps
- A toy model for quantum mechanics
- How uncertainty enables non-classical dynamics
- Popescu-Rohrlich Boxes in Quantum Measure Theory
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