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Superconductors for fusion: a roadmap

With the first tokamak designed for full nuclear operation now well into final assembly (ITER), and a major new research tokamak starting commissioning (JT60SA), nuclear fusion is becoming a mainstream potential energy source for the future. A critical part of the viability of magnetic confinement f...

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Autores principales: Mitchell, Neil, Zheng, Jinxing, Vorpahl, Christian, Corato, Valentina, Sanabria, Charlie, Segal, Michael, Sorbom, Brandon, Slade, Robert, Brittles, Greg, Bateman, Rod, Miyoshi, Yasuyuki, Banno, Nobuya, Saito, Kazuyoshi, Kario, Anna, Ten Kate, Herman, Bruzzone, Pierluigi, Wesche, Rainer, Schild, Thierry, Bykovskiy, Nikolay, Dudarev, Alexey, Mentink, Matthias, Mangiarotti, Franco Julio, Sedlak, Kamil, Evans, David, Van Der Laan, Danko C, Weiss, Jeremy D, Liao, Min, Liu, Gen
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1361-6668/ac0992
http://cds.cern.ch/record/2782834
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author Mitchell, Neil
Zheng, Jinxing
Vorpahl, Christian
Corato, Valentina
Sanabria, Charlie
Segal, Michael
Sorbom, Brandon
Slade, Robert
Brittles, Greg
Bateman, Rod
Miyoshi, Yasuyuki
Banno, Nobuya
Saito, Kazuyoshi
Kario, Anna
Ten Kate, Herman
Bruzzone, Pierluigi
Wesche, Rainer
Schild, Thierry
Bykovskiy, Nikolay
Dudarev, Alexey
Mentink, Matthias
Mangiarotti, Franco Julio
Sedlak, Kamil
Evans, David
Van Der Laan, Danko C
Weiss, Jeremy D
Liao, Min
Liu, Gen
author_facet Mitchell, Neil
Zheng, Jinxing
Vorpahl, Christian
Corato, Valentina
Sanabria, Charlie
Segal, Michael
Sorbom, Brandon
Slade, Robert
Brittles, Greg
Bateman, Rod
Miyoshi, Yasuyuki
Banno, Nobuya
Saito, Kazuyoshi
Kario, Anna
Ten Kate, Herman
Bruzzone, Pierluigi
Wesche, Rainer
Schild, Thierry
Bykovskiy, Nikolay
Dudarev, Alexey
Mentink, Matthias
Mangiarotti, Franco Julio
Sedlak, Kamil
Evans, David
Van Der Laan, Danko C
Weiss, Jeremy D
Liao, Min
Liu, Gen
author_sort Mitchell, Neil
collection CERN
description With the first tokamak designed for full nuclear operation now well into final assembly (ITER), and a major new research tokamak starting commissioning (JT60SA), nuclear fusion is becoming a mainstream potential energy source for the future. A critical part of the viability of magnetic confinement for fusion is superconductor technology. The experience gained and lessons learned in the application of this technology to ITER and JT60SA, together with new and improved superconducting materials, is opening multiple routes to commercial fusion reactors. The objective of this roadmap is, through a series of short articles, to outline some of these routes and the materials/technologies that go with them.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27828342021-10-04T11:35:44Zdoi:10.1088/1361-6668/ac0992http://cds.cern.ch/record/2782834engMitchell, NeilZheng, JinxingVorpahl, ChristianCorato, ValentinaSanabria, CharlieSegal, MichaelSorbom, BrandonSlade, RobertBrittles, GregBateman, RodMiyoshi, YasuyukiBanno, NobuyaSaito, KazuyoshiKario, AnnaTen Kate, HermanBruzzone, PierluigiWesche, RainerSchild, ThierryBykovskiy, NikolayDudarev, AlexeyMentink, MatthiasMangiarotti, Franco JulioSedlak, KamilEvans, DavidVan Der Laan, Danko CWeiss, Jeremy DLiao, MinLiu, GenSuperconductors for fusion: a roadmapAccelerators and Storage RingsWith the first tokamak designed for full nuclear operation now well into final assembly (ITER), and a major new research tokamak starting commissioning (JT60SA), nuclear fusion is becoming a mainstream potential energy source for the future. A critical part of the viability of magnetic confinement for fusion is superconductor technology. The experience gained and lessons learned in the application of this technology to ITER and JT60SA, together with new and improved superconducting materials, is opening multiple routes to commercial fusion reactors. The objective of this roadmap is, through a series of short articles, to outline some of these routes and the materials/technologies that go with them.oai:cds.cern.ch:27828342021
spellingShingle Accelerators and Storage Rings
Mitchell, Neil
Zheng, Jinxing
Vorpahl, Christian
Corato, Valentina
Sanabria, Charlie
Segal, Michael
Sorbom, Brandon
Slade, Robert
Brittles, Greg
Bateman, Rod
Miyoshi, Yasuyuki
Banno, Nobuya
Saito, Kazuyoshi
Kario, Anna
Ten Kate, Herman
Bruzzone, Pierluigi
Wesche, Rainer
Schild, Thierry
Bykovskiy, Nikolay
Dudarev, Alexey
Mentink, Matthias
Mangiarotti, Franco Julio
Sedlak, Kamil
Evans, David
Van Der Laan, Danko C
Weiss, Jeremy D
Liao, Min
Liu, Gen
Superconductors for fusion: a roadmap
title Superconductors for fusion: a roadmap
title_full Superconductors for fusion: a roadmap
title_fullStr Superconductors for fusion: a roadmap
title_full_unstemmed Superconductors for fusion: a roadmap
title_short Superconductors for fusion: a roadmap
title_sort superconductors for fusion: a roadmap
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1361-6668/ac0992
http://cds.cern.ch/record/2782834
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