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Source: The Open Library

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1Thomson backscattering from an intense relativistic electron beam as a diagnostic for a free electron laser

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“Thomson backscattering from an intense relativistic electron beam as a diagnostic for a free electron laser” Metadata:

  • Title: ➤  Thomson backscattering from an intense relativistic electron beam as a diagnostic for a free electron laser
  • Author:
  • Language: English
  • Number of Pages: Median: 105
  • Publish Date:

“Thomson backscattering from an intense relativistic electron beam as a diagnostic for a free electron laser” Subjects and Themes:

Edition Identifiers:

Access and General Info:

  • First Year Published: 1984
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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2Zeitaufgelöste Thomson-Streudiagnostik mit einem periodisch emittierenden Rubin-Laser

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“Zeitaufgelöste Thomson-Streudiagnostik mit einem periodisch emittierenden Rubin-Laser” Metadata:

  • Title: ➤  Zeitaufgelöste Thomson-Streudiagnostik mit einem periodisch emittierenden Rubin-Laser
  • Author:
  • Language: ger
  • Number of Pages: Median: 90
  • Publisher: Sine nomine
  • Publish Date:
  • Publish Location: [S.l

“Zeitaufgelöste Thomson-Streudiagnostik mit einem periodisch emittierenden Rubin-Laser” Subjects and Themes:

Edition Identifiers:

  • The Open Library ID: OL3855915M
  • Online Computer Library Center (OCLC) ID: 9280689
  • Library of Congress Control Number (LCCN): 81175241

Access and General Info:

  • First Year Published: 1980
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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3A Study of the feasibility of measuring the plasma ion temperature in JET by Thomson scattering using a far-infrared laser

“A Study of the feasibility of measuring the plasma ion temperature in JET by Thomson scattering using a far-infrared laser” Metadata:

  • Title: ➤  A Study of the feasibility of measuring the plasma ion temperature in JET by Thomson scattering using a far-infrared laser
  • Language: English
  • Number of Pages: Median: 151
  • Publisher: ➤  Ecole polytechnique fédérale, CRPP [Centre de recherches en physique des plasmas]
  • Publish Date:
  • Publish Location: Lausanne

“A Study of the feasibility of measuring the plasma ion temperature in JET by Thomson scattering using a far-infrared laser” Subjects and Themes:

Edition Identifiers:

Access and General Info:

  • First Year Published: 1980
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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Source: Wikipedia

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Thomson scattering

Thomson scattering is the elastic scattering of electromagnetic radiation by a free charged particle, as described by classical electromagnetism. It is

Rutherford scattering experiments

widespread use of scattering in particle physics to study subatomic matter. Rutherford scattering or Coulomb scattering is the elastic scattering of charged

Compton scattering

Compton scattering (or the Compton effect) is the quantum theory of scattering of a high-frequency photon through an interaction with a charged particle

Plum pudding model

particle scattering showed that Thomson's scattering model could not explain the large angle scattering and it showed that multiple scattering was not

Classical electron radius

classical electron radius is sometimes known as the Lorentz radius or the Thomson scattering length. It is one of a trio of related scales of length, the other

Cosmic microwave background

hydrogen. Unlike the plasma, these atoms could not scatter thermal radiation by Thomson scattering, and so the universe became transparent. Known as the

Elastic scattering

Elastic scattering is a form of particle scattering in scattering theory, nuclear physics and particle physics. In this process, the internal states of

Scattering

connection between light scattering and acoustic scattering in the 1870s. Near the end of the 19th century, the scattering of cathode rays (electron

Coulomb scattering

Coulomb scattering is the elastic scattering of charged particles by the Coulomb interaction. The physical phenomenon was used by Ernest Rutherford in

Klein–Nishina formula

The formula describes both the Thomson scattering of low energy photons (e.g. visible light) and the Compton scattering of high energy photons (e.g. x-rays