In late 2003 a 10 kHz multiposition Thomson scattering diagnostic with high spatial resolution became operational on the TEXTOR tokamak. In the initial phase of operation, one burst of 18 pulses of 12 J each with a repetition rate of 5 kHz could be extracted from the laser system. The installation of a low-dope ruby rod (spring 2005) resulted in a system, which can deliver higher pulse energy and moreover a divergence of better than 0.7 mrad, leading to a big improvement in the detection of Thomson scattering photons. Furthermore, the number of laser pulses in one burst could be extended to even more than 30. The achieved laser energy of more than 15 J/pulse makes it possible to measure electron temperature and density profiles with an obse...
In this article, the recent installed multiposition Thomson scattering (TS) of the TJ-II stellarator...
A high resolution multiposition Thomson scattering setup to measure the electron temperature (T-e) a...
In this article, the use of an 8 x 8-matrix independent 10-stage dynode multichannel photomultiplier...
In December 2003 a new 10 kHz multiposition Thomson scattering diagnostic with high spatial resoluti...
The main challenge for the Thomson scattering (TS) diagnostic on the TEXTOR tokamak is the detailed ...
In this article, the recently installed high resolution multiposition Thomson scattering (TS) system...
The main challenge for the Thomson scattering (TS) diagnostic on the TEXTOR tokamak is the detailed ...
In this article, the recently installed high resolution multiposition Thomson scattering (TS) system...
This paper describes the design and operation of a 40 spatial channel Thomson scattering system that...
This paper describes the design and operation of a 40-spatial channel Thomson scattering system that...
Advanced Thomson Scattering (TS) diagnostics with a Laser Intra-cavity Multi-pass Probing (LIMP) sys...
A highly sensitive imaging Thomson scattering system was developed for low temperature (0.1-10 eV) p...
\u3cp\u3eAdvanced Thomson Scattering (TS) diagnostics with a Laser Intra-cavity Multi-pass Probing (...
In this article a double pulse multiposition Thomson scattering diagnostic, under construction at RT...
In this article, the recent installed multiposition Thomson scattering (TS) of the TJ-II stellarator...
In this article, the recent installed multiposition Thomson scattering (TS) of the TJ-II stellarator...
A high resolution multiposition Thomson scattering setup to measure the electron temperature (T-e) a...
In this article, the use of an 8 x 8-matrix independent 10-stage dynode multichannel photomultiplier...
In December 2003 a new 10 kHz multiposition Thomson scattering diagnostic with high spatial resoluti...
The main challenge for the Thomson scattering (TS) diagnostic on the TEXTOR tokamak is the detailed ...
In this article, the recently installed high resolution multiposition Thomson scattering (TS) system...
The main challenge for the Thomson scattering (TS) diagnostic on the TEXTOR tokamak is the detailed ...
In this article, the recently installed high resolution multiposition Thomson scattering (TS) system...
This paper describes the design and operation of a 40 spatial channel Thomson scattering system that...
This paper describes the design and operation of a 40-spatial channel Thomson scattering system that...
Advanced Thomson Scattering (TS) diagnostics with a Laser Intra-cavity Multi-pass Probing (LIMP) sys...
A highly sensitive imaging Thomson scattering system was developed for low temperature (0.1-10 eV) p...
\u3cp\u3eAdvanced Thomson Scattering (TS) diagnostics with a Laser Intra-cavity Multi-pass Probing (...
In this article a double pulse multiposition Thomson scattering diagnostic, under construction at RT...
In this article, the recent installed multiposition Thomson scattering (TS) of the TJ-II stellarator...
In this article, the recent installed multiposition Thomson scattering (TS) of the TJ-II stellarator...
A high resolution multiposition Thomson scattering setup to measure the electron temperature (T-e) a...
In this article, the use of an 8 x 8-matrix independent 10-stage dynode multichannel photomultiplier...