Weinberg angle

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File:Weinberg angle (relation between coupling constants).svg
Weinberg angle θScript error: No such module "Check for unknown parameters".W, and relation between couplings gScript error: No such module "Check for unknown parameters"., Template:PrimeScript error: No such module "Check for unknown parameters"., and e = g sin θScript error: No such module "Check for unknown parameters".W. Adapted from Lee (1981).[1]
File:Electroweak.svg
The pattern of weak isospin, T3Script error: No such module "Check for unknown parameters"., and weak hypercharge, YScript error: No such module "Check for unknown parameters".W, of the known elementary particles, showing electric charge, QScript error: No such module "Check for unknown parameters".,Template:Efn along the Weinberg angle. The neutral Higgs field (upper left, circled) breaks the electroweak symmetry and interacts with other particles to give them mass. Three components of the Higgs field become part of the massive W and Z bosons.

The weak mixing angle or Weinberg angle[2] is a parameter in the Weinberg–Salam theory (by Steven Weinberg and Abdus Salam) of the electroweak interaction, part of the Standard Model of particle physics, and is usually denoted as θScript error: No such module "Check for unknown parameters".W. It is the angle by which spontaneous symmetry breaking rotates the original

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Template:Rcatsh and

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Template:Rcatsh vector boson plane, producing as a result the

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Template:Rcatsh boson, and the photon.[3] Its measured value is slightly below 30°, but also varies, very slightly increasing, depending on how high the relative momentum of the particles involved in the interaction is that the angle is used for.[4]

Details

The algebraic formula for the combination of the

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Template:Rcatsh and

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Template:Rcatsh vector bosons (i.e. 'mixing') that simultaneously produces the massive

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Template:Rcatsh boson and the massless photon (

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Template:Rcatsh) is expressed by the formula

Template:In5(γZ0)=(cosθwsinθwsinθwcosθw)(B0W0).[3]

The weak mixing angle also gives the relationship between the masses of the W and Z bosons (denoted as mScript error: No such module "Check for unknown parameters".W and mScript error: No such module "Check for unknown parameters".Z),

Template:In5mZ=mWcosθw.

The angle can be expressed in terms of the SU(2)LScript error: No such module "Check for unknown parameters". and U(1)YScript error: No such module "Check for unknown parameters". couplings (weak isospin gScript error: No such module "Check for unknown parameters". and weak hypercharge Template:PrimeScript error: No such module "Check for unknown parameters"., respectively),

Template:In5cosθw=g g2+g' 2  and sinθw=g g2+g' 2 .

The electric charge is then expressible in terms of it, e = g sin θScript error: No such module "Check for unknown parameters".w = Template:Prime cos θScript error: No such module "Check for unknown parameters".w (refer to the figure).

Because the value of the mixing angle is currently determined empirically, in the absence of any superseding theoretical derivation it is mathematically defined as

Template:In5cosθw= mW mZ.[5]

The value of θScript error: No such module "Check for unknown parameters".w varies as a function of the momentum transfer, qScript error: No such module "Check for unknown parameters"., at which it is measured. This variation, or 'running', is a key prediction of the electroweak theory. The most precise measurements have been carried out in electron–positron collider experiments at a value of qScript error: No such module "Check for unknown parameters". = 91.2 GeV/c, corresponding to the mass of the

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Template:Rcatsh boson, mScript error: No such module "Check for unknown parameters".Z.

In practice, the quantity sin2 θScript error: No such module "Check for unknown parameters".w is more frequently used. The 2004 best estimate of sin2 θScript error: No such module "Check for unknown parameters".w, at qScript error: No such module "Check for unknown parameters". = 91.2 GeV/c, in the MS scheme is Script error: No such module "val"., which is an average over measurements made in different processes, at different detectors. Atomic parity violation experiments yield values for sin2 θScript error: No such module "Check for unknown parameters".w at smaller values of qScript error: No such module "Check for unknown parameters"., below 0.01 GeV/c, but with much lower precision. In 2005 results were published from a study of parity violation in Møller scattering in which a value of sin2 θScript error: No such module "Check for unknown parameters".w = Script error: No such module "val". was obtained at qScript error: No such module "Check for unknown parameters". = 0.16 GeV/c, establishing experimentally the so-called 'running' of the weak mixing angle. These values correspond to a Weinberg angle varying between 28.7° and 29.3° ≈ 30°. LHCb measured in 7 and 8 TeV proton–proton collisions an effective angle of sin2 θScript error: No such module "Check for unknown parameters".Script error: No such module "Su". = 0.23142,[6] though the value of qScript error: No such module "Check for unknown parameters". for this measurement is determined by the partonic collision energy, which is close to the Z boson mass.

CODATA 2022[4] gives the value

Template:In5sin2θw=1( mW mZ)2=0.22305(23).Template:Efn

The massless photon (

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Template:RcatshScript error: No such module "Check for unknown parameters".) couples to the unbroken electric charge, Q = T3 + Template:SfracScript error: No such module "Check for unknown parameters".YScript error: No such module "Check for unknown parameters".w, while the

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Template:Rcatsh boson couples to the broken charge T3Q sin2 θScript error: No such module "Check for unknown parameters".w.

Footnotes

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References

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