Coherent synchrotron radiation at submillimeter and millimeter wavelengths

To study the coherence effect of synchrotron radiation (SR), light emission from the Tohoku 300 MeV linac, whose energy and bunch length of electrons were 180 MeV and a few millimeters, was observed in the submillimeter and millimeter wavelength regions by using a grating spectrometer. The absolute...

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Published inNuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Vol. 301; no. 1; pp. 161 - 166
Main Authors Shibata, Yukio, Ishi, Kimihiro, Ohsaka, Toshiaki, Mishiro, Hideaki, Takahashi, Toshiharu, Ikezawa, Mikihiko, Kondo, Yasuhiro, Nakazato, Toshiharu, Oyamada, Masayuki, Niimura, Nobuo, Urasawa, Shigekazu, Kato, Ryukou, Torizuka, Yoshiharu
Format Journal Article
LanguageEnglish
Published Elsevier B.V 15.02.1991
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Abstract To study the coherence effect of synchrotron radiation (SR), light emission from the Tohoku 300 MeV linac, whose energy and bunch length of electrons were 180 MeV and a few millimeters, was observed in the submillimeter and millimeter wavelength regions by using a grating spectrometer. The absolute intensity of ordinary SR in the visible region was also measured. In comparison with ordinary SR, the absolute intensity of SR in the millimeter wavelength region was enhanced by about a factor of 10 6, which corresponded roughly to the number of electrons in one bunch. The intensity of enhanced SR showed the quadratic dependence on the beam current. The enhanced SR was strongly polarized in the electron orbital plane. The relation between the electron distribution in a bunch and the spectra of coherent SR is discussed.
AbstractList To study the coherence effect of synchrotron radiation (SR), light emission from the Tohoku 300 MeV linac, whose energy and bunch length of electrons were 180 MeV and a few millimeters, was observed in the submillimeter and millimeter wavelength regions by using a grating spectrometer. The absolute intensity of ordinary SR in the visible region was also measured. In comparison with ordinary SR, the absolute intensity of SR in the millimeter wavelength region was enhanced by about a factor of 10 6, which corresponded roughly to the number of electrons in one bunch. The intensity of enhanced SR showed the quadratic dependence on the beam current. The enhanced SR was strongly polarized in the electron orbital plane. The relation between the electron distribution in a bunch and the spectra of coherent SR is discussed.
Author Takahashi, Toshiharu
Kato, Ryukou
Ishi, Kimihiro
Torizuka, Yoshiharu
Oyamada, Masayuki
Kondo, Yasuhiro
Nakazato, Toshiharu
Niimura, Nobuo
Ohsaka, Toshiaki
Ikezawa, Mikihiko
Urasawa, Shigekazu
Mishiro, Hideaki
Shibata, Yukio
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  givenname: Yasuhiro
  surname: Kondo
  fullname: Kondo, Yasuhiro
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  surname: Nakazato
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  organization: Laboratory of Nuclear Science, Tohoku University, Taihaku-ku, Sendai 982, Japan
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  givenname: Masayuki
  surname: Oyamada
  fullname: Oyamada, Masayuki
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  givenname: Shigekazu
  surname: Urasawa
  fullname: Urasawa, Shigekazu
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  surname: Kato
  fullname: Kato, Ryukou
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  givenname: Yoshiharu
  surname: Torizuka
  fullname: Torizuka, Yoshiharu
  organization: Laboratory of Nuclear Science, Tohoku University, Taihaku-ku, Sendai 982, Japan
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