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The Future of Superconducting Technology for Accelerators
Superconducting magnets and RF cavities are widely used in accelerators, and future accelerator projects heavily rely on this technology. There may be several questions on the future of the SC technology, concerning the feasibility of very high field dipoles (~15 T or more), possible technology evol...
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Lenguaje: | eng |
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2017
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Acceso en línea: | https://dx.doi.org/10.18429/JACoW-IPAC2017-MOYBA1 http://cds.cern.ch/record/2315464 |
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author | Yamamoto, Akira |
author_facet | Yamamoto, Akira |
author_sort | Yamamoto, Akira |
collection | CERN |
description | Superconducting magnets and RF cavities are widely used in accelerators, and future accelerator projects heavily rely on this technology. There may be several questions on the future of the SC technology, concerning the feasibility of very high field dipoles (~15 T or more), possible technology evolution(s) with new materials, operation at higher temperature, and final sustainability of the technology in terms of helium procurement. The talk will cover a brief history/achievements and some interesting (future) developments, partly or fully answering these question. |
id | oai-inspirehep.net-1626202 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2017 |
record_format | invenio |
spelling | oai-inspirehep.net-16262022019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2017-MOYBA1http://cds.cern.ch/record/2315464engYamamoto, AkiraThe Future of Superconducting Technology for AcceleratorsAccelerators and Storage RingsSuperconducting magnets and RF cavities are widely used in accelerators, and future accelerator projects heavily rely on this technology. There may be several questions on the future of the SC technology, concerning the feasibility of very high field dipoles (~15 T or more), possible technology evolution(s) with new materials, operation at higher temperature, and final sustainability of the technology in terms of helium procurement. The talk will cover a brief history/achievements and some interesting (future) developments, partly or fully answering these question.Superconducting technology has been inevitably required for guiding and accelerating particle beams in energy/intensity frontier particle accelerators. Based on a long history with NbTi superc onductor, accelerator magnet technology has much progressed to realize higher magnetic fields above10 T by using Nb 3 Sn superconductor. It has been applied to specific magnets for the HL- LHC project at CERN and furt her effort to increase the field to with increasing the current density is being investigated for future frontier accelerators. Superconducting RF technology has much advanced with pure Nb super- conductor and the completion of European XFEL accelerator is a very important milestone for future large-scale SRF accelerator applications. Thin-layer SRF technology will become critically important for further advances in the field-gradient and quality performances. This report will cover the progress and future of the superconducting technology for accelerators.IPAC-2017-MOYBA1oai:inspirehep.net:16262022017 |
spellingShingle | Accelerators and Storage Rings Yamamoto, Akira The Future of Superconducting Technology for Accelerators |
title | The Future of Superconducting Technology for Accelerators |
title_full | The Future of Superconducting Technology for Accelerators |
title_fullStr | The Future of Superconducting Technology for Accelerators |
title_full_unstemmed | The Future of Superconducting Technology for Accelerators |
title_short | The Future of Superconducting Technology for Accelerators |
title_sort | future of superconducting technology for accelerators |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.18429/JACoW-IPAC2017-MOYBA1 http://cds.cern.ch/record/2315464 |
work_keys_str_mv | AT yamamotoakira thefutureofsuperconductingtechnologyforaccelerators AT yamamotoakira futureofsuperconductingtechnologyforaccelerators |