1987
DOI: 10.1088/0029-5515/27/11/017
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First results from the LIDAR Thomson Scattering System on JET

Abstract: The LIDAR Thomson Scattering System on the JET tokamak is described. Backscattering geometry and the time of flight method are employed to measure profiles along the major radius in the equatorial plane. First electron temperature profiles with a spatial resolution of better than 15 cm obtained with this new diagnostic technique are presented.

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Cited by 47 publications
(14 citation statements)
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“…ii) The electron density profile in JET plasmas is measured by two diagnostics, namely the LIDAR Thomson scattering system [17] (providing ne at 50 points along a horizontal chord) and the far-infrared interferometer [18]. The latter measures the fine-integrated electron density along 6 chords, which is inverted with a generalized Abel inversion of the type described in sect.…”
Section: F(p ~) = F G(r O) DL L(p~)mentioning
confidence: 99%
See 1 more Smart Citation
“…ii) The electron density profile in JET plasmas is measured by two diagnostics, namely the LIDAR Thomson scattering system [17] (providing ne at 50 points along a horizontal chord) and the far-infrared interferometer [18]. The latter measures the fine-integrated electron density along 6 chords, which is inverted with a generalized Abel inversion of the type described in sect.…”
Section: F(p ~) = F G(r O) DL L(p~)mentioning
confidence: 99%
“…The two ion temperature measurements appear to give overall similar results, apart from the uncertainties in the radial position of the profile points. In the latter example, the Te profile from LIDAR Thomson scattering measurements [17] is also available; the outward shift of this profile is less pronounced compared to the Te profile from ECE. This suggests that the relative shifts between the profiles are probably to be attributed to errors in the measurements.…”
Section: = (Dln Td/dr)/(dln Nd/dr )mentioning
confidence: 99%
“…A second important advance was the use of a high-repetition rate YAG laser at Garching, Roehr et al [10], which permitted data to be obtained at 100 Hz or more. This laser plays an important role in measurements on industrial plasmas.…”
Section: Introduction An Updated Version Of Plasma Scattering Of Elecmentioning
confidence: 99%
“…Razdobarin, A.A. Besshaposhnikov, L.N. Pjatnitsky et al [2,3] applied the Thomson scattering method in various facilities for diagnostics of the low-temperature and the fusion plasma. Since then this method has been permanently developed; in particular this concerns radiation sources and their components.…”
Section: Introductionmentioning
confidence: 99%