The deuterium operation of the large helical device (LHD) began in March 7, 2017, after long-term preparation and commissioning of apparatuses necessary for execution of the deuterium experiment. A comprehensive set of neutron diagnostics was developed and installed onto LHD through numerous efforts in preparation. Neutron diagnostics play an essential role in both neutron yield management for the radiation safety and extension of energetic-particle physics study in LHD. Neutron flux monitor (NFM) characterized by fast-response and wide dynamic range capabilities is successfully working. Total neutron emission rate reached 3.3 × 10 15 (n/s) in the first deuterium campaign of LHD. The highest neutron emission rate was recorded in inward shif...
The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large f...
A database of the total neutron emission rate (Sn) in the ion cyclotron range of frequency (ICRF) he...
A fast time response, wide dynamic range neutron flux monitor has been developed toward the LHD deut...
The deuterium operation of the large helical device (LHD) heliotron started in March 7, 2017, after ...
Deuterium experiment on the Large Helical Device (LHD) is now being planned at the National Institut...
The deuterium plasma experiments have been conducted since March 2017 on the Large Helical Device. T...
The commissioning of three different types of D-D neutron energy spectrometer has been performed in ...
The deuterium experiment started from March 2017 on the large helical device (LHD) as a part of the ...
In the Large Helical Device (LHD) of the National Institute for Fusion Science, the experiments usin...
To achieve a steady-state fusion burning plasma, energetic particle confinement studies have been pe...
In the currently performed neutral beam (NB) -heated deuterium plasma experiments, neutrons are main...
An integrated set of neutron diagnostics developed for the deuterium operation of the Large Helical ...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
A trial for extending the total neutron emission rate (Sn) was performed in the Large Helical Device...
The Large Helical Device (LHD) is one of the world’s largest superconducting helical system fu...
The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large f...
A database of the total neutron emission rate (Sn) in the ion cyclotron range of frequency (ICRF) he...
A fast time response, wide dynamic range neutron flux monitor has been developed toward the LHD deut...
The deuterium operation of the large helical device (LHD) heliotron started in March 7, 2017, after ...
Deuterium experiment on the Large Helical Device (LHD) is now being planned at the National Institut...
The deuterium plasma experiments have been conducted since March 2017 on the Large Helical Device. T...
The commissioning of three different types of D-D neutron energy spectrometer has been performed in ...
The deuterium experiment started from March 2017 on the large helical device (LHD) as a part of the ...
In the Large Helical Device (LHD) of the National Institute for Fusion Science, the experiments usin...
To achieve a steady-state fusion burning plasma, energetic particle confinement studies have been pe...
In the currently performed neutral beam (NB) -heated deuterium plasma experiments, neutrons are main...
An integrated set of neutron diagnostics developed for the deuterium operation of the Large Helical ...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
A trial for extending the total neutron emission rate (Sn) was performed in the Large Helical Device...
The Large Helical Device (LHD) is one of the world’s largest superconducting helical system fu...
The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large f...
A database of the total neutron emission rate (Sn) in the ion cyclotron range of frequency (ICRF) he...
A fast time response, wide dynamic range neutron flux monitor has been developed toward the LHD deut...