What is Cross section: Definition and 315 Discussions

In physics, the cross section is a measure of the probability that a specific process will take place when some kind of radiant excitation (e.g. a particle beam, sound wave, light, or an X-ray) intersects a localized phenomenon (e.g. a particle or density fluctuation). For example, the Rutherford cross-section is a measure of probability that an alpha-particle will be deflected by a given angle during a collision with an atomic nucleus. Cross section is typically denoted σ (sigma) and is expressed in units of transverse area. In a way, it can be thought of as the size of the object that the excitation must hit in order for the process to occur, but more exactly, it is a parameter of a stochastic process.
In classical physics, this probability often converges to a deterministic proportion of excitation energy involved in the process, so that, for example, with light scattering off of a particle, the cross section specifies the amount of optical power scattered from light of a given irradiance (power per area). It is important to note that although the cross section has the same units as area, the cross section may not necessarily correspond to the actual physical size of the target given by other forms of measurement. It is not uncommon for the actual cross-sectional area of a scattering object to be much larger or smaller than the cross section relative to some physical process. For example, plasmonic nanoparticles can have light scattering cross sections for particular frequencies that are much larger than their actual cross-sectional areas.
When two discrete particles interact in classical physics, their mutual cross section is the area transverse to their relative motion within which they must meet in order to scatter from each other. If the particles are hard inelastic spheres that interact only upon contact, their scattering cross section is related to their geometric size. If the particles interact through some action-at-a-distance force, such as electromagnetism or gravity, their scattering cross section is generally larger than their geometric size.
When a cross section is specified as the differential limit of a function of some final-state variable, such as particle angle or energy, it is called a differential cross section (see detailed discussion below). When a cross section is integrated over all scattering angles (and possibly other variables), it is called a total cross section or integrated total cross section. For example, in Rayleigh scattering, the intensity scattered at the forward and backward angles is greater than the intensity scattered sideways, so the forward differential scattering cross section is greater than the perpendicular differential cross section, and by adding all of the infinitesimal cross sections over the whole range of angles with integral calculus, we can find the total cross section.
Scattering cross sections may be defined in nuclear, atomic, and particle physics for collisions of accelerated beams of one type of particle with targets (either stationary or moving) of a second type of particle. The probability for any given reaction to occur is in proportion to its cross section. Thus, specifying the cross section for a given reaction is a proxy for stating the probability that a given scattering process will occur.
The measured reaction rate of a given process depends strongly on experimental variables such as the density of the target material, the intensity of the beam, the detection efficiency of the apparatus, or the angle setting of the detection apparatus. However, these quantities can be factored away, allowing measurement of the underlying two-particle collisional cross section.
Differential and total scattering cross sections are among the most important measurable quantities in nuclear, atomic, and particle physics.

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  1. ORF

    What causes a plateau in the cross section of neutrons?

    Hello It seems to me that the nuclei have a flat elastic scattering cross section of neutrons, for neutron energies from eV to MeV. http://www.nuclear-power.net/wp-content/uploads/2015/11/Elastic-Scattering-Cross-section-light-elements-min.png I thought that maybe it was caused because the...
  2. S

    Relation between cross section, scattering angle and KE?

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  3. parazit

    FLUKA Code : Total Cross Section Calculation

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  4. B

    How to calculate Young's modulus of layered cross section

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  5. U

    Production of Z boson - Cross Section

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  6. U

    How Do You Calculate Cross Sections in Electron-Neutrino Scattering?

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  7. X

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  8. Z

    Question about Resonance Cross Sections

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  9. U

    Cross Section for e+e- in EM interaction - Is it the same?

    I was studying my notes and specifically for the ##e^+e^- \rightarrow \mu^+ \mu^-## process, cross section is given by \sigma = \frac{4\pi}{3} \left( \frac{\alpha \hbar c}{W} \right)^2 where ##\alpha = \frac{g_{EM}^2}{4\pi}## and ##W## is the centre of mass energy. Is this the same for...
  10. C

    Neutron cross section in fission

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  11. U

    Special H boson with very high cross section?

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  12. ShayanJ

    Pair production differential cross section

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  13. D

    Information about absorption cross section

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  14. thegirl

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  15. V

    Calculation of total ionization cross section

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  16. G

    Electron impact ionization cross section

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  17. J

    Zero Cross Section for e-+ e+ -> γ

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  18. Matt atkinson

    Calc Nuclear Cross Section for Alpha Particles Reacting with 48-Ca

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  19. W

    Differential cross-section for partonic collisions

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  20. U

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  21. binbagsss

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  22. P

    How to calculate yields from the cross section?

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  23. E

    Cross Section for Asteroid Impact

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  24. Y

    Dependence of resistance on cross section area

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  25. Prof. 27

    Current through Point or Cross Sectional Area

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  26. J

    Compton scattering differential cross section

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  27. Coffee_

    The use of cross section in a particle collision exercise.

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  28. R

    Hydrogen - Halpha cross section

    Greetings, i need the absorption cross section for the absorption of an H-alpha photon by a hydrogen atom, in the correct state of course, which I'm pretty sure is neutral hydrogen, n=2. I am needing this for a project, so i also need a reliable source where this comes from. Thanks beforehand...
  29. K

    Difference between: Absorbance and Absorption Cross section

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  30. tom.stoer

    Time dependent scattering theory - cross section

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  31. L

    Cross Section: Quark-Gluon vs. Quark-Photon

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  32. G

    Question for the total collisional cross section for the neutrals

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  33. A

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  34. V

    Cross section in muon pair production from electron positron annihilat

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  35. M

    Resistance Variable Cross Section

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  36. J

    Calculating Radar Cross Section for a Spherical Object in GHz Frequency

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  37. F

    Find specific reaction cross section in an ENDF file

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  38. C

    Maximizing Flow in a Rain Gutter: 3-sided vs Semicircular Cross Section

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  39. M

    Radar Cross Section (RCS) problem

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  40. N

    How do I produce a hole with a square cross section?

    What are three different ways that i can produce a hole with a square cross section in a plate with a thickness of at least 1"?
  41. Z

    Finding Cross Section Data for Tungsten, Rhenium, Osmium & Iridium

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  42. Safinaz

    Off-shell Particle Decay: Does Mass Affect Cross Section?

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  43. V

    Born-Bethe approximation for cross section

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  44. X

    Eikonal Approximation: Find total Scattering Cross Section

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  45. J

    What does cross section area mean when dealing with stress/strain?

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  46. B

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  47. H

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  48. F

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  49. S

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