A LIDAR TS diagnostic is being developed for the measurement of the spatial profiles of electron temperature Te and density ne in the DTT (Divertor Tokamak Test) experiment under construction in Italy. The system will use a line of sight tangential to the central column in the equatorial plane, a layout that offers the possibility to diagnose the edge profiles on the high field side in addition to the plasma core. Possible detrimental effects of stray light pulses and mitigation countermeasures are discussed both for the core and edge measurements. The performances expected with two types of detectors, microchannel photomultipliers (MCP PMTs) or digital single-photon-avalanche-diode (SPAD) arrays type are compared for this layout. SPAD arrays show superior properties for many aspects such as spatial resolution, resilience against intense stray light pulses, and possible high repetition rate of the diagnostic. Last, but not least, their use can reduce the cost of the diagnostic by doing away with the need of a two-wavelength laser system and of very high bandwidth transient digitisers.

Development of a LIDAR Thomson Scattering Diagnostic for DTT

2023

Abstract

A LIDAR TS diagnostic is being developed for the measurement of the spatial profiles of electron temperature Te and density ne in the DTT (Divertor Tokamak Test) experiment under construction in Italy. The system will use a line of sight tangential to the central column in the equatorial plane, a layout that offers the possibility to diagnose the edge profiles on the high field side in addition to the plasma core. Possible detrimental effects of stray light pulses and mitigation countermeasures are discussed both for the core and edge measurements. The performances expected with two types of detectors, microchannel photomultipliers (MCP PMTs) or digital single-photon-avalanche-diode (SPAD) arrays type are compared for this layout. SPAD arrays show superior properties for many aspects such as spatial resolution, resilience against intense stray light pulses, and possible high repetition rate of the diagnostic. Last, but not least, their use can reduce the cost of the diagnostic by doing away with the need of a two-wavelength laser system and of very high bandwidth transient digitisers.
2023
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
Inglese
20th International Symposium on Laser-Aided Plasma Diagnostics (LAPD 2023)
https://lapd20.nifs.ac.jp/LAPD20_program_abstracts_20230828.pdf
10-14 September 2023
Kyoto, Japan
LIDAR
Thomson Scattering Diagnostic
DTT
Abstract and Poster ID P1-21
0
info:eu-repo/semantics/conferenceObject
none
274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
Giudicotti L.; Fassina A.; Pasqualotto R., Nielsen P.; Salzmann H.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/457286
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