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Stochastic electrodynamics and Zitterbewegung

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Stochastic electrodynamics and Zitterbewegung

Stochastic electrodynamics vs. Zitterbewegung

Stochastic electrodynamics (SED) is an extension of the de Broglie–Bohm interpretation of quantum mechanics, with the electromagnetic zero-point field (ZPF) playing a central role as the guiding pilot-wave. Zitterbewegung ("trembling motion" in German) is a hypothetical rapid motion of elementary particles, in particular electrons, that obey the Dirac equation.

Similarities between Stochastic electrodynamics and Zitterbewegung

Stochastic electrodynamics and Zitterbewegung have 3 things in common (in Unionpedia): Casimir effect, Dirac equation, Vacuum state.

Casimir effect

In quantum field theory, the Casimir effect and the Casimir–Polder force are physical forces arising from a quantized field.

Casimir effect and Stochastic electrodynamics · Casimir effect and Zitterbewegung · See more »

Dirac equation

In particle physics, the Dirac equation is a relativistic wave equation derived by British physicist Paul Dirac in 1928.

Dirac equation and Stochastic electrodynamics · Dirac equation and Zitterbewegung · See more »

Vacuum state

In quantum field theory, the quantum vacuum state (also called the quantum vacuum or vacuum state) is the quantum state with the lowest possible energy.

Stochastic electrodynamics and Vacuum state · Vacuum state and Zitterbewegung · See more »

The list above answers the following questions

Stochastic electrodynamics and Zitterbewegung Comparison

Stochastic electrodynamics has 51 relations, while Zitterbewegung has 19. As they have in common 3, the Jaccard index is 4.29% = 3 / (51 + 19).

References

This article shows the relationship between Stochastic electrodynamics and Zitterbewegung. To access each article from which the information was extracted, please visit:

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