This work describes a coherence imaging spectrometer capable of making spatially resolved CIII flow measurements in the DIII-D lower divertor. The spectrometer exploits a periscope view of the plasma to produce line-of-sight averaged velocity measurements of CIII. From these chord averaged flow measurements, a 2D poloidal cross section of the CIII flow is tomographically reconstructed. Details of the diagnostic setup, acquired data, and data analysis will be presented, along with prospects for future applications
A video camera system has been installed on the DIII-D tokamak for 2-D spatial studies of line emiss...
A coherence-imaging spectroscopy (CIS) technique was developed to investigate plasma confinement in ...
A novel rotating mask system has been designed and implemented on the DIII-D phase contrast imaging ...
This work describes C2+ emission (CIII 465 nm) and flow measurements from the divertor region of a L...
Various spatial heterodyne polarization interferometers for spectrally-resolved optical imaging of e...
To explore the influence of drifts on ion flows in the DIII-D divertor and Scrape-Off-Layer (SOL), ...
A new coherence imaging Doppler spectroscopy diagnostic has been deployed on the UK's Mega Amp Spher...
This article describes the results of spatial heterodyne Doppler "coherence imaging" of carbon ion f...
Doppler coherence imaging spectroscopy (CIS) has been installed on J-TEXT tokamak to provide a wealt...
Coherence Imaging Spectroscopy (CIS) has emerged as a powerful tool for investigating complex ion ph...
Developing a plasma exhaust solution suitable for future high power tokamaks is one of the major cha...
A new coherence imaging Doppler spectroscopy diagnostic has been deployed on the UK’s Mega Amp Spher...
Imaging sensor technologies such as charge coupled devices and complementary metal-oxide-semiconduct...
Imaging diagnostic techniques are desirable for fusion plasma experiments for their wide coverage an...
In this paper, the pixelated phase mask (PPM) method of interferometry is applied to coherence imagi...
A video camera system has been installed on the DIII-D tokamak for 2-D spatial studies of line emiss...
A coherence-imaging spectroscopy (CIS) technique was developed to investigate plasma confinement in ...
A novel rotating mask system has been designed and implemented on the DIII-D phase contrast imaging ...
This work describes C2+ emission (CIII 465 nm) and flow measurements from the divertor region of a L...
Various spatial heterodyne polarization interferometers for spectrally-resolved optical imaging of e...
To explore the influence of drifts on ion flows in the DIII-D divertor and Scrape-Off-Layer (SOL), ...
A new coherence imaging Doppler spectroscopy diagnostic has been deployed on the UK's Mega Amp Spher...
This article describes the results of spatial heterodyne Doppler "coherence imaging" of carbon ion f...
Doppler coherence imaging spectroscopy (CIS) has been installed on J-TEXT tokamak to provide a wealt...
Coherence Imaging Spectroscopy (CIS) has emerged as a powerful tool for investigating complex ion ph...
Developing a plasma exhaust solution suitable for future high power tokamaks is one of the major cha...
A new coherence imaging Doppler spectroscopy diagnostic has been deployed on the UK’s Mega Amp Spher...
Imaging sensor technologies such as charge coupled devices and complementary metal-oxide-semiconduct...
Imaging diagnostic techniques are desirable for fusion plasma experiments for their wide coverage an...
In this paper, the pixelated phase mask (PPM) method of interferometry is applied to coherence imagi...
A video camera system has been installed on the DIII-D tokamak for 2-D spatial studies of line emiss...
A coherence-imaging spectroscopy (CIS) technique was developed to investigate plasma confinement in ...
A novel rotating mask system has been designed and implemented on the DIII-D phase contrast imaging ...