Bell's theorem
Sign in to saveAlso known as Bell inequality, Bell inequalities, Bell theorem, Bell's inequality
in quantum physics, the theorem that locally causal hidden-variable theories cannot reproduce correlations predicted by quantum mechanics
In the Vinony graph
Within Vinony's link graph, Bell's theorem is referenced by 344 other articles, and connects out to Schrödinger's cat, Nature and EPR paradox.
It sits within the topics 1964 introductions, Hidden variable theory and Inequalities (mathematics).
Its subject is documented across 31 Wikipedia language editions.
Wikidata facts
- Image
- Bell-test-photon-analyer.svg
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- inception
- 1964-00-00
- Commons category
- Bell's theorem
- Stack Exchange tag
- physics.stackexchange.com/tags/bells-inequality
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Encyclopedic overview
Bell's theorem is a term encompassing a number of closely related results in physics, all of which determine that quantum mechanics is incompatible with local hidden-variable theories, given some basic assumptions about the nature of measurement. The first such result was introduced by John Stewart Bell in 1964, building upon the Einstein–Podolsky–Rosen paradox, which had called attention to the phenomenon of quantum entanglement.
In the context of Bell's theorem, "local" refers to the principle of locality, the idea that a particle can only be influenced by its immediate surroundings, and that interactions mediated by physical fields cannot propagate faster than the speed of light. "Hidden variables" are supposed properties of quantum particles that are not included in quantum theory but nevertheless affect the outcome of experiments. In the words of Bell, "If [a hidden-variable theory] is local it will not agree with quantum mechanics, and if it agrees with quantum mechanics it will not be local."
Excerpted from Wikipedia’s “Bell's theorem” article, available under the CC BY-SA 4.0 licence.