Kopsavilkums
The most performant deuterium-tritium (DT) plasma discharges realized by the Joint European Torus (JET) tokamak in the recent DT campaign have produced neutron yields on the order of 1018 n/s. At such high neutron yields, gamma-ray spectroscopy measurements with scintillators are challenging as events from the neutron-induced background often dominate over the signal, leading to a significant fraction of pileup events and instability of the photodetector gain along with the consequent degradation of the reconstructed spectrum. Here, we describe the solutions adopted for the tangential lanthanum bromide spectrometer installed at JET. A data acquisition system with free streaming mode digitization capabilities for the entire duration of the discharge has been used to solve dead-time related issues and a data reconstruction code with pileup recovery and photodetector gain drift restoration has been implemented for off-line analysis of the data. This work focuses on the acquired data storage and parsing, with a detailed explanation of the pileup recovery and gain drift restoration algorithms.
| Oriģinālvaloda | Angļu |
|---|---|
| Raksta numurs | 093525 |
| Žurnāls | Review of Scientific Instruments |
| Sējums | 93 |
| Izdevuma numurs | 9 |
| DOIs | |
| Publikācijas statuss | Publicēts - 1 sept. 2022 |
ANO IAM
Šis izpildes rezultāts palīdz sasniegt šādus ANO ilgtspējīgas attīstības mērķus (IAM)
-
7. IAM — Tīra Enerģija par Pieejamu Cenu
OECD Zinātnes nozare
- 1.3 Fizika un astronomija
Nospiedums
Uzziniet vairāk par pētniecības tēmām “A new dedicated signal processing system for gamma-ray spectrometers in high power deuterium–tritium plasma scenarios in tokamaks”. Kopā tie veido unikālu nospiedumu.Citēt šo
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver