A proof-of-principle collimated Neutron flux Camera (NC) monitor for the measurement of the 2.45 MeV neutron emission from the deuterium-deuterium fusion reactions has been developed, installed and put into use at the Mega Ampere Spherical Tokamak (MAST). The NC measures the spatial and time resolved volume integrated neutron emissivity in deuterium fusion plasmas in the presence of auxiliary plasma heating along two equatorial and two diagonal lines of sight whose tangency radius can be varied between plasma discharges. This paper describes the NC design principles, their technical realization and its performances illustrated with experimental observations of different plasma scenarios. Neutron. count rates in the range 0.1-1.5 MHz are rou...
The basic principles for designing a camera system for neutron imaging in low fusion power tokamaks ...
A new radial neutron camera system has been developed and operated recently in the HL-2A tokamak to ...
The power output of plasma experiments and fusion reactors is a crucial parameter. It is determined ...
Measurements of the neutron emission, resulting from nuclear fusion reactions between the hydrogen i...
Measurements of the neutron emission resulting from nuclear fusion reactions provide an abundance of...
The γ-ray characterizing possibility of the neutron collimated flux monitor (in short, Neutron Camer...
Measurements of neutron emission from a fusion plasma can provide a wealth of information on the und...
The study of high power fusion plasmas at the JET tokamak has been further enhanced through the deve...
Advancements in high temperature superconducting technology have opened a path toward high-field, co...
The importance of neutron emission measurements and modeling at present nuclear fusion devices relie...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
Advancements in high temperature superconducting technology have opened a path toward high-field, co...
Measurements of radial DD neutron emission profiles by the vertical neutron camera (VNC) are perform...
The deuterium operation of the large helical device (LHD) began in March 7, 2017, after long-term pr...
Characteristics of the new vertical neutron camera (VNC3) installed for the study of energetic-parti...
The basic principles for designing a camera system for neutron imaging in low fusion power tokamaks ...
A new radial neutron camera system has been developed and operated recently in the HL-2A tokamak to ...
The power output of plasma experiments and fusion reactors is a crucial parameter. It is determined ...
Measurements of the neutron emission, resulting from nuclear fusion reactions between the hydrogen i...
Measurements of the neutron emission resulting from nuclear fusion reactions provide an abundance of...
The γ-ray characterizing possibility of the neutron collimated flux monitor (in short, Neutron Camer...
Measurements of neutron emission from a fusion plasma can provide a wealth of information on the und...
The study of high power fusion plasmas at the JET tokamak has been further enhanced through the deve...
Advancements in high temperature superconducting technology have opened a path toward high-field, co...
The importance of neutron emission measurements and modeling at present nuclear fusion devices relie...
A wide-range neutron flux measurement instrument is developed herein for monitoring the total neutro...
Advancements in high temperature superconducting technology have opened a path toward high-field, co...
Measurements of radial DD neutron emission profiles by the vertical neutron camera (VNC) are perform...
The deuterium operation of the large helical device (LHD) began in March 7, 2017, after long-term pr...
Characteristics of the new vertical neutron camera (VNC3) installed for the study of energetic-parti...
The basic principles for designing a camera system for neutron imaging in low fusion power tokamaks ...
A new radial neutron camera system has been developed and operated recently in the HL-2A tokamak to ...
The power output of plasma experiments and fusion reactors is a crucial parameter. It is determined ...