Gyrotron FU II has been successfully applied as a submillimeter wave radiation source to plasma scattering measurements on the Compact Helical System (CHS) in National Institute for Fusion Science (NIFS) in Japan. The gyrotron operates in a long pulse mode (the pulse width is about 600 ms) at a frequency of about 350 GHz (the corresponding wavelength is 0.85 mm). The output power is about 110 W. The output power is transmitted along a circular waveguide system and converted to a Gaussian-like beam by a quasi-optical antenna. After that, the beam is directed onto the CHS plasma and the scattered signal is detected by a homodyne detection system. The frequency and the wave number of the scattered signal are analyzed. The results suggest that ...
Development of the collective Thomson scattering (CTS) diagnostic system for LHD is presented. High ...
Collective Thomson scattering (CTS) is expected to provide the spatially resolved velocity distribut...
A high power pulse gyrotron with a frequency around 400 GHz is now under development at FIR FU. In t...
Gyrotron FU II has been successfully applied as a submillimeter wave radiation source to plasma scat...
The scattering method with electromagnetic wave makes it possible to observe frequency and wavenumbe...
The performance of plasma scattering measurement (S/N ratio, the spatial and wave number resolutions...
Scattering measurements of density fluctuations gives important information to understanding of the ...
Density fluctuations in magnetically confined plasmas are important physical quantities to be measur...
Scattering measurements of density fluctuations gives important information to understand of the mec...
High frequency, medium power gyrotrons (Gyrotron FU series) have been developed at Fukui University ...
An initial design of a Thomson scattering system for fusion plasma diagnostic in the Large Helical D...
Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS wi...
The gyrotrons developed at Fukui University (“Gyrotron FU series”) are high-frequency, medium-power ...
The Gyrotron FU series in Fukui University is being developed to provide the high frequency source f...
High-power sub-terahertz pulse gyrotrons are under development in FIR FU for application to collecti...
Development of the collective Thomson scattering (CTS) diagnostic system for LHD is presented. High ...
Collective Thomson scattering (CTS) is expected to provide the spatially resolved velocity distribut...
A high power pulse gyrotron with a frequency around 400 GHz is now under development at FIR FU. In t...
Gyrotron FU II has been successfully applied as a submillimeter wave radiation source to plasma scat...
The scattering method with electromagnetic wave makes it possible to observe frequency and wavenumbe...
The performance of plasma scattering measurement (S/N ratio, the spatial and wave number resolutions...
Scattering measurements of density fluctuations gives important information to understanding of the ...
Density fluctuations in magnetically confined plasmas are important physical quantities to be measur...
Scattering measurements of density fluctuations gives important information to understand of the mec...
High frequency, medium power gyrotrons (Gyrotron FU series) have been developed at Fukui University ...
An initial design of a Thomson scattering system for fusion plasma diagnostic in the Large Helical D...
Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS wi...
The gyrotrons developed at Fukui University (“Gyrotron FU series”) are high-frequency, medium-power ...
The Gyrotron FU series in Fukui University is being developed to provide the high frequency source f...
High-power sub-terahertz pulse gyrotrons are under development in FIR FU for application to collecti...
Development of the collective Thomson scattering (CTS) diagnostic system for LHD is presented. High ...
Collective Thomson scattering (CTS) is expected to provide the spatially resolved velocity distribut...
A high power pulse gyrotron with a frequency around 400 GHz is now under development at FIR FU. In t...