Quantization of the electromagnetic field/Related Articles: Difference between revisions

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(New page: {{subpages}} ==Classical electromagnetic field== {{r|Maxwell equations}} {{r|Electromagnetic wave}} {{r|Electromagnetic radiation}} {{r|Vector potential}} ==Quantum mechanics== {{r|Q...)
 
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==Classical electromagnetic field==
==Classical electromagnetic field==
{{r|Maxwell equations}}
{{r|Electromagnetic wave}}   
{{r|Electromagnetic wave}}   
{{r|Electromagnetic radiation}}  
{{r|Electromagnetic radiation}}  
{{r|Vector potential}}  
{{r|Maxwell equations}}
{{r|Vector potential}}


==Quantum mechanics==
==Quantum mechanics==
{{r|Quantization}}
{{r|Quantization}}
{{r|Quantum electrodynamics}}
{{r|Second quantization}}
{{r|Second quantization}}
{{r|Standard Model}}
{{r|Photon}}
{{r|Photon}}
==Articles related by keyphrases (Bot populated)==
{{r|Angular momentum coupling}}
{{r|Stark effect}}
{{r|Momentum}}
{{r|Velocity}}

Latest revision as of 06:00, 9 October 2024

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A list of Citizendium articles, and planned articles, about Quantization of the electromagnetic field.
See also changes related to Quantization of the electromagnetic field, or pages that link to Quantization of the electromagnetic field or to this page or whose text contains "Quantization of the electromagnetic field".

Classical electromagnetic field

  • Electromagnetic wave [r]: A change, periodic in space and time, of an electric field E(r,t) and a magnetic field B(r,t); a stream of electromagnetic waves, referred to as electromagnetic radiation, can be seen as a stream of massless elementary particles, named photons. [e]
  • Electromagnetic radiation [r]: a collection of electromagnetic waves, usually of different wavelengths. [e]
  • Maxwell equations [r]: Mathematical equations describing the interrelationship between electric and magnetic fields; dependence of the fields on electric charge- and current- densities. [e]
  • Vector potential [r]: Add brief definition or description

Quantum mechanics

Articles related by keyphrases (Bot populated)

  • Angular momentum coupling [r]: The procedure of constructing eigenvectors of a system's angular momentum out of angular momentum eigenvectors of its subsystems. [e]
  • Stark effect [r]: The shifting and splitting of spectral lines of atoms and molecules due to the presence of an external static electric field. [e]
  • Momentum [r]: mass of a particle times its velocity (a vector). [e]
  • Velocity [r]: The rate of change of position, measured as a vector physical quantity, defined by both speed and direction in meters per second: (m/s) or ms-1 (SI units). [e]