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  1. Language links are at the top of the page across from the title.

  2. e. In quantum field theory the vacuum expectation value (also called condensate or simply VEV) of an operator is its average or expectation value in the vacuum. The vacuum expectation value of an operator O is usually denoted by One of the most widely used examples of an observable physical effect that results from the vacuum expectation value ...

  3. The links to gauge field and scalar field may be satisfactory to the routine reader, but I think to novice readers, albeit interested, this is not very helpful. If gauge fields or scalar fields are relevant to understanding the Higgs field, this should be explained in more detail (and understandibly).

  4. The action. The Yukawa interaction is an interaction between a scalar field (or pseudoscalar field) ϕ and a Dirac field ψ of the type. (scalar) or ( pseudoscalar ). The action for a meson field interacting with a Dirac baryon field is. where the integration is performed over n dimensions; for typical four-dimensional spacetime n = 4, and.

  5. 28 ago 2013 · In an animated video for the Ted-Ed education network, Fermilab's Don Lincoln explains the Higgs field with an analogy about a cocktail party. 28 August, 2013. Back in April CERN physicists teamed up with animators to produce an explanation of the Higgs field for the education network TED-Ed. Now Don Lincoln of Fermilab has produced his take on ...

  6. elementary particle transmitting the Higgs field giving particles mass. Higgs boson (Q402) ... Wikipedia:Vital articles/Level/4. point in time. 31 October 2022.

  7. The pure Higgs boson sector of the Standard model is modelled by a Klein–Gordon field with a potential, denoted for this section. The Standard model is a gauge theory and so while the field transforms trivially under the Lorentz group, it transforms as a C 2 {\displaystyle \mathbb {C} ^{2}} -valued vector under the action of the SU ( 2 ) {\displaystyle {\text{SU}}(2)} part of the gauge group.