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Stochastic electrodynamics and the interpretation of quantum theory

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arxiv 1205.0916 v3 pith:7RPEMW4L submitted 2012-05-04 quant-ph

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keywords quantumstochastictheoryconstantelectrodynamicsinterpretationmakemechanics
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I propose that quantum mechanics is a stochastic theory and quantum phenomena derive from the existence of real vacuum stochastic fields filling space. I revisit stochastic electrodynamics (SED), a theory that studies classical systems of electrically charged particles immersed in an electromagnetic (zeropoint) radiation field with spectral density proportional to the cube of the frequency, Planck's constant appearing as the parameter fixing the scale. Asides from briefly reviewing known results, I make a detailed comparison between SED and quantum mechanics. Both theories make the same predictions when the stochastic equations of motion are of first order in Planck constant, but not in general. I propose that SED provides a clue for a realistic interpretation of quantum theory.

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Cited by 1 Pith paper

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  1. Conditional probabilities in quantum-optical settings

    quant-ph 2026-07 accept novelty 6.0 of 10

    Conditioning on one outcome of a joint noisy measurement can reduce (even eliminate) uncertainty in a complementary variable, and the resulting conditional distribution generally has no Born-rule representation via th...

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