The development of collective scattering diagnostics is essential for understanding of the anomalous transport attributed to short scale length microturbulence which poses a threat to the development of nuclear fusion reactors. Signals in the sub-THz range (0.1 – 0.8 THz) with adequate power are required to probe the plasma. A joint international effort is therefore devoted to the design and realization of novel backward wave oscillators at 0.346 THz and above with output power in the 1 Watt range to replace the bulky, high maintenance optically pumped FIR lasers so far utilized for this plasma diagnostic
The NSTX upgrade has provided the impetus to redesign and improve the High-k Scattering System. Impr...
Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS wi...
A high power radiation source in the THz range with long pulse and narrow line width is required for...
Summary form only given. The understanding of plasma turbulence in nuclear fusion is related to the ...
Nuclear fusion energy is perhaps one of the most demanding challenges the scientific community is fa...
Summary form only given. The understanding of plasma turbulence in nuclear fusion is related to the ...
Understanding of the anomalous transport attributed to short-scale length microturbulence through co...
Nuclear fusion is probably the most demanding challenge the scientific community is facing. The plas...
A new approach to realize THz BWOs relaxing the assembly challenge is presented. An international co...
Two backward wave oscillator (BWO) designs are proposed for a 346 GHz source for fusion plasma diagn...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
346GHz backward wave oscillations (BWOs) have been considered as a key device for fusion plasma diag...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
The NSTX upgrade has provided the impetus to redesign and improve the High-k Scattering System. Impr...
Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS wi...
A high power radiation source in the THz range with long pulse and narrow line width is required for...
Summary form only given. The understanding of plasma turbulence in nuclear fusion is related to the ...
Nuclear fusion energy is perhaps one of the most demanding challenges the scientific community is fa...
Summary form only given. The understanding of plasma turbulence in nuclear fusion is related to the ...
Understanding of the anomalous transport attributed to short-scale length microturbulence through co...
Nuclear fusion is probably the most demanding challenge the scientific community is facing. The plas...
A new approach to realize THz BWOs relaxing the assembly challenge is presented. An international co...
Two backward wave oscillator (BWO) designs are proposed for a 346 GHz source for fusion plasma diagn...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
346GHz backward wave oscillations (BWOs) have been considered as a key device for fusion plasma diag...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
A backward wave oscillator (BWO) based on a double-staggered grating (DSG) slow wave structure (SWS)...
The NSTX upgrade has provided the impetus to redesign and improve the High-k Scattering System. Impr...
Plan of collective Thomson scattering (CTS) experiment for the Large Helical Device (LHD) in NIFS wi...
A high power radiation source in the THz range with long pulse and narrow line width is required for...