Physics:Quantum W and Z bosons: Difference between revisions
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[[File: | [[File:Quantum W and Z bosons complex yellow.png|thumb|300px|Complex yellow illustration of W and Z bosons as massive weak-interaction carriers in decay and scattering processes.]] | ||
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== Abstract == | |||
Quantum W and Z bosons are massive gauge bosons that mediate the weak interaction. The charged W bosons enable charged-current processes such as beta decay, while the neutral Z boson mediates neutral-current weak scattering. Their masses, couplings, and decay channels are key evidence for electroweak theory and symmetry breaking. | |||
== Overview == | == Overview == | ||
Revision as of 18:16, 19 May 2026
Quantum W and Z bosons are massive gauge bosons that mediate the weak interaction.
Abstract
Quantum W and Z bosons are massive gauge bosons that mediate the weak interaction. The charged W bosons enable charged-current processes such as beta decay, while the neutral Z boson mediates neutral-current weak scattering. Their masses, couplings, and decay channels are key evidence for electroweak theory and symmetry breaking.
Overview
The charged W bosons and neutral Z boson govern weak processes such as beta decay and neutrino scattering.
See also
Table of contents (84 articles)
Index
Composite matter
Sub-molecular
Full contents
1. Materials (6) Back to index
2. Matter (5) Back to index
3. Plasma and fusion physics (6) Back to index
4. Molecules (6) Back to index
5. Nuclear matter (6) Back to index
6. Atoms (7) Back to index
7. Particles (12) Back to index
8. Composite particles (12) Back to index
9. Fields (12) Back to index
10. Vacuum and spacetime (12) Back to index
References
Author: Harold Foppele
Source attribution: W and Z bosons










