Title of article :
The Diagnostic Systems in the FTU
Author/Authors :
Benedetti، M. De نويسنده , , Buratti، P. نويسنده , , Carraro، L. نويسنده , , Esposito، B. نويسنده , , Gabellieri، L. نويسنده , , Giovannozzi، E. نويسنده , , Granucci، G. نويسنده , , Tudisco، O. نويسنده , , Cocilovo، V. نويسنده , , Apruzzese، G. M. نويسنده , , Cantarini، L. نويسنده , , Canton، A. نويسنده , , Angelis، R. de نويسنده , , Grosso، L. A. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
-401
From page :
402
To page :
0
Abstract :
The design of diagnostics for the Frascati Tokamak Upgrade (FTU) is challenging because of the compactness of the machine (8-cm-wide ports) and the low operating temperatures requiring the presence of a cryostat. Nevertheless, a rather complete diagnostic system has been progressively installed. The basic systems include a set of magnetic probes, various visible and ultraviolet spectrometers, electron cyclotron emission (ECE) for electron temperature profiles measurements and electron tails monitoring, far-infrared and CO2 interferometry, X-ray (soft and hard) measurements, a multichord neutron diagnostics (with different type detectors), and a Thomson scattering system. Some diagnostics specific to the FTU physics program have been used such as microwave reflectometry for turbulence studies, edge-scanning Langmuir probes for radio-frequency coupling assessment, oblique ECE, and a fast electron bremsstrahlung (FEB) camera for lower hybrid current drive-induced fast electron tails. These systems are briefly reviewed in this paper. Further developments including a scanning CO2 laser two-color interferometer, two FEB cameras for tomographic analysis, a motional Stark effect system, and a collective Thomson scattering system are also described.
Keywords :
Fusion Transmutation of Waste Reactor , FTWR
Journal title :
FUSION SCIENCE AND TECHNOLOGY
Serial Year :
2004
Journal title :
FUSION SCIENCE AND TECHNOLOGY
Record number :
112893
Link To Document :
بازگشت