In the Large Helical Device (LHD) of the National Institute for Fusion Science, a deuterium plasma experiment was performed in March 2017. Neutrons with an energy of 2.45 MeV are generated by d (d, n) 3He reactions. The evaluation of this neutron flux in the torus hall, as well as within the LHD vessel, is very important for the decommissioning of the LHD in the future and the radiation shielding for workers and components around the LHD. In this study, we evaluate the spatial distribution of thermal and epithermal neutron flux on the floor level of the LHD torus hall by measuring the neutron activation of gold foils. The flux information obtained in the experiment can be used for the evaluation of radio-activation and the shielding design
High-temperature and high-density plasmas are achieved by means of real-time control, fast diagnosti...
The deuterium experiment started from March 2017 on the large helical device (LHD) as a part of the ...
We developed an analysis model to predict and describe neutron emission anisotropy caused by anisotr...
The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large f...
In the Large Helical Device (LHD) of the National Institute for Fusion Science, the experiments usin...
For the estimation of the neutron field generated by deuterium plasma operation in the Large Helical...
Evaluating the performance of the shielding walls and shielding doors at radiation facilities is imp...
The deuterium operation of the large helical device (LHD) began in March 7, 2017, after long-term pr...
A single crystal CVD diamond detector (SDD) was installed in the torus hall of the Large Helical Dev...
In situ calibration of the neutron activation system on the Large Helical Device (LHD) was performed...
The activities carried out to obtain public consent for deuterium experiments in LHD, which began in...
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...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
A database of the total neutron emission rate (Sn) in the ion cyclotron range of frequency (ICRF) he...
High-temperature and high-density plasmas are achieved by means of real-time control, fast diagnosti...
The deuterium experiment started from March 2017 on the large helical device (LHD) as a part of the ...
We developed an analysis model to predict and describe neutron emission anisotropy caused by anisotr...
The global flux distributions for thermal, epithermal and fast neutrons in the torus hall of large f...
In the Large Helical Device (LHD) of the National Institute for Fusion Science, the experiments usin...
For the estimation of the neutron field generated by deuterium plasma operation in the Large Helical...
Evaluating the performance of the shielding walls and shielding doors at radiation facilities is imp...
The deuterium operation of the large helical device (LHD) began in March 7, 2017, after long-term pr...
A single crystal CVD diamond detector (SDD) was installed in the torus hall of the Large Helical Dev...
In situ calibration of the neutron activation system on the Large Helical Device (LHD) was performed...
The activities carried out to obtain public consent for deuterium experiments in LHD, which began in...
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...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
A database of the total neutron emission rate (Sn) in the ion cyclotron range of frequency (ICRF) he...
High-temperature and high-density plasmas are achieved by means of real-time control, fast diagnosti...
The deuterium experiment started from March 2017 on the large helical device (LHD) as a part of the ...
We developed an analysis model to predict and describe neutron emission anisotropy caused by anisotr...