Fermionic Field

In quantum field theory, a fermionic field is a quantum field whose quanta are fermions; that is, they obey Fermi–Dirac statistics. Fermionic fields obey canonical anticommutation relations rather than the canonical commutation relations of bosonic fields.

The most prominent example of a fermionic field is the Dirac field, which describes fermions with spin-1/2: electrons, protons, quarks, etc. The Dirac field can be described as either a 4-component spinor or as a pair of 2-component Weyl spinors. Spin-1/2 Majorana fermions, such as the hypothetical neutralino, can be described as either a dependent 4-component Majorana spinor or a single 2-component Weyl spinor. It is not known whether the neutrino is a Majorana fermion or a Dirac fermion (see also Neutrinoless double-beta decay for experimental efforts to determine this).

Read more about Fermionic Field:  Basic Properties, Dirac Fields

Famous quotes containing the word field:

    Love to chawnk green apples an’ go swimmin’ in the
    lake.—
    Hate to take the castor-ile they give for belly-ache!
    ‘Most all the time, the whole year round, there ain’t no flies on
    me,
    But jest ‘fore Christmas I’m as good as I kin be!
    —Eugene Field (1850–1895)