scattering$72495$ - definizione. Che cos'è scattering$72495$
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Cosa (chi) è scattering$72495$ - definizione

PHENOMENON IN QUANTUM FIELD THEORY
Møller Scattering; Möller scattering; Moller scattering; Moeller scattering; Moller Scattering

Inverse scattering problem         
DETERMINATION OF THE SOLUTIONS OF A SET OF DIFFERENTIAL EQUATIONS BASED ON
Inverse scattering
In mathematics and physics, the inverse scattering problem is the problem of determining characteristics of an object, based on data of how it scatters incoming radiation or particles. It is the inverse problem to the direct scattering problem, which is to determine how radiation or particles are scattered based on the properties of the scatterer.
Dynamic light scattering         
TECHNIQUE FOR DETERMINING SIZE DISTRIBUTION OF PARTICLES
Quasielastic light scattering; Dynamic Light Scattering; Photon Correlation Spectroscopy; Photon correlation spectroscopy; Quasi-elastic light scattering
Dynamic light scattering (DLS) is a technique in physics that can be used to determine the size distribution profile of small [in suspension] or [[polymers in solution.Berne, B.
Scattering         
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DEFLECTION OF PARTICLES OR RADIATION THROUGH INTERACTIONS WITH OTHER OBJECTS
Radiation scattering; Scattering theory; Light scattering; Coherent Scattering; Scattering (optics); Direct scattering problem; Direct scattering; Multiple scattering; Scattered radiation; Deflection angle; Deflection Angle; Scattering of electromagnetic radiation; Coherent scattering; Scattering: Optical Imaging; Light Scattering in Solids; Light scattering in solids; Light scattering in liquids and solids; Scattering state; Optical scattering; Scattering Theory; Scattering patterns; Scattering pattern; Scatterer; Scattering process; Scattering (physics); Scatter (physics); Electromagnetic scattering; Scattering center; Multiple-scattering; Wave scattering
·noun Act of strewing about; something scattered.
II. Scattering ·p.pr. & ·vb.n. of Scatter.
III. Scattering ·adj Going or falling in various directions; not united or aggregated; divided among many; as, scattering votes.

Wikipedia

Møller scattering

Møller scattering is the name given to electron-electron scattering in quantum field theory, named after the Danish physicist Christian Møller. The electron interaction that is idealized in Møller scattering forms the theoretical basis of many familiar phenomena such as the repulsion of electrons in the helium atom. While formerly many particle colliders were designed specifically for electron-electron collisions, more recently electron-positron colliders have become more common. Nevertheless, Møller scattering remains a paradigmatic process within the theory of particle interactions.

We can express this process in the usual notation, often used in particle physics:

In quantum electrodynamics, there are two tree-level Feynman diagrams describing the process: a t-channel diagram in which the electrons exchange a photon and a similar u-channel diagram. Crossing symmetry, one of the tricks often used to evaluate Feynman diagrams, in this case implies that Møller scattering should have the same cross section as Bhabha scattering (electron-positron scattering).

In the electroweak theory the process is instead described by four tree-level diagrams: the two from QED and an identical pair in which a Z boson is exchanged instead of a photon. The weak force is purely left-handed, but the weak and electromagnetic forces mix into the particles we observe. The photon is symmetric by construction, but the Z boson prefers left-handed particles to right-handed particles. Thus the cross sections for left-handed electrons and right-handed differ. The difference was first noticed by the Russian physicist Yakov Zel'dovich in 1959, but at the time he believed the parity violating asymmetry (a few hundred parts per billion) was too small to be observed. This parity violating asymmetry can be measured by firing a polarized beam of electrons through an unpolarized electron target (liquid hydrogen, for instance), as was done by an experiment at the Stanford Linear Accelerator Center, SLAC-E158. The asymmetry in Møller scattering is

where me is the electron mass, E the energy of the incoming electron (in the reference frame of the other electron), G F {\displaystyle G_{\rm {F}}} is Fermi's constant, α {\displaystyle \alpha } is the fine structure constant, Θ cm {\displaystyle \Theta _{\text{cm}}} is the scattering angle in the center of mass frame, and θ W {\displaystyle \theta _{\rm {W}}} is the weak mixing angle, also known as the Weinberg angle.