In this paper we discuss strategies for the development of fast photodetectors suitable for operation in the \u3bb > 850 nm near-infrared (NIR) spectral region in the ITER core LIDAR Thomson scattering (TS) system. Detection of this spectral range is necessary if a Nd:YAG laser operating at the fundamental wavelength (\u3bb = 1.06 \u3bcm) will be used as the input laser source. Different types of NIR photodetectors are potentially suitable for use in ITER LIDAR TS: the transferred electron (TE) InGaAsP/InP hybrid pho- todiodes and microchannel plate photomultipliers (MCP PMTs), the In(x)Ga(1 12x)As MCP image intensifiers and PMTs, and the detectors based on transmission Si photocathodes. But their characteristics of either sensitivity, acti...
A highly sensitive imaging Thomson scattering system was developed for low temperature (0.1-10 eV) p...
Polarimetric Thomson scattering (TS) is a novel diagnostic technique proposed as an alternative to c...
Application Note This note describes the function of the Andor iStar DH734-18U-63 intensified CCD ca...
The core LIDAR Thomson scattering for ITER is specified for core profile measurements with a spatial...
In the new ITER core LIDAR Thomson scattering system under development, detectors with pulse respons...
The central electron temperature and density of the ITER plasma may be determined by Thomson scatter...
The central electron temperature and density of the ITER plasma may be determined by Thomson scatter...
The edge light detection and ranging (LIDAR) Thomson scattering diagnostic at the Joint European Tor...
The Joint European Torus (JET) tokamak has two light detection and ranging (LIDAR) Thomson scatterin...
The LIDAR Thomson Scattering for Advanced Tokamaks project made a valuable contribution by combining...
We are developing a high-energy (5J) and high repetition-rate (100Hz) laser system for ITER. Optical...
The standard technique for the relative calibration in present Thomson scattering diagnostics, can b...
We first review the principles of the dual-laser calibration technique for measuring the relative se...
The Core Plasma Thomson Scattering (CPTS) diagnostic on ITER performs measure- ments of the electron...
A highly sensitive imaging Thomson scattering system was developed for low temperature (0.1-10 eV) p...
Polarimetric Thomson scattering (TS) is a novel diagnostic technique proposed as an alternative to c...
Application Note This note describes the function of the Andor iStar DH734-18U-63 intensified CCD ca...
The core LIDAR Thomson scattering for ITER is specified for core profile measurements with a spatial...
In the new ITER core LIDAR Thomson scattering system under development, detectors with pulse respons...
The central electron temperature and density of the ITER plasma may be determined by Thomson scatter...
The central electron temperature and density of the ITER plasma may be determined by Thomson scatter...
The edge light detection and ranging (LIDAR) Thomson scattering diagnostic at the Joint European Tor...
The Joint European Torus (JET) tokamak has two light detection and ranging (LIDAR) Thomson scatterin...
The LIDAR Thomson Scattering for Advanced Tokamaks project made a valuable contribution by combining...
We are developing a high-energy (5J) and high repetition-rate (100Hz) laser system for ITER. Optical...
The standard technique for the relative calibration in present Thomson scattering diagnostics, can b...
We first review the principles of the dual-laser calibration technique for measuring the relative se...
The Core Plasma Thomson Scattering (CPTS) diagnostic on ITER performs measure- ments of the electron...
A highly sensitive imaging Thomson scattering system was developed for low temperature (0.1-10 eV) p...
Polarimetric Thomson scattering (TS) is a novel diagnostic technique proposed as an alternative to c...
Application Note This note describes the function of the Andor iStar DH734-18U-63 intensified CCD ca...