Artigo De: orcid, scopus, cienciavitae
ITER collective Thomson scattering-Preparing to diagnose fusion-born alpha particles (invited)
Review of Scientific Instruments
— 2022
Informações chave
Autores:
Publicado em
1 de outubro de 2022
Resumo
<jats:p> The ITER Collective Thomson scattering (CTS) diagnostic will measure the dynamics of fusion-born alpha particles in the burning ITER plasma by scattering a 1 MW 60 GHz gyrotron beam off fast-ion induced fluctuations in the plasma. The diagnostic will have seven measurement volumes across the ITER cross section and will resolve the alpha particle energies in the range from 300 keV to 3.5 MeV; importantly, the CTS diagnostic is the only diagnostic capable of measuring confined alpha particles for energies below ∼1.7 MeV and will also be sensitive to the other fast-ion populations. The temporal resolution is 100 ms, allowing the capture of dynamics on that timescale, and the typical spatial resolution is 10–50 cm. The development and design of the in-vessel and primary parts of the CTS diagnostic has been completed. This marks the beginning of a new phase of preparation to maximize the scientific benefit of the diagnostic, e.g., by investigating the capability to contribute to the determination of the fuel-ion ratio and the bulk ion temperature as well as integrating data analysis with other fast-ion and bulk-ion diagnostics. </jats:p>
Detalhes da publicação
Autores da comunidade :
Bruno Miguel Soares Gonçalves
ist24515
Raul Luís
ist168474
Yohanes Setiawan Nietiadi
ist190895
Alberto Manuel Martinho Vale
ist13968
Paulo Jorge Gonçalves Varela
ist23882
Versão da publicação
AO - Versão original do autor
Título do contentor da publicação
Review of Scientific Instruments
Volume
93
Fascículo
10
ISSN
0034-6748
Domínio Científico (FOS)
physical-sciences - Física
Idioma da publicação (código ISO)
eng - Inglês
Identificador alternativo (URI)
http://www.scopus.com/inward/record.url?eid=2-s2.0-85141099112&partnerID=MN8TOARS
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