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Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities

Upcoming projects requiring high-Q ~650 MHz medium-to-high-${\beta}$ elliptical cavities drive a need to understand magnetic RF loss mechanisms and mitigations in greater detail. High-temperature annealing and fast-cooldowns have proven effective techniques for promoting magnetic flux expulsion in c...

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Autores principales: McGee, K., Kim, S-H., Ostroumov, P., Eremeev, G., Furuta, F., Martinello, M., Melnychuk, O., Netepenko, A.
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2865060
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author McGee, K.
Kim, S-H.
Ostroumov, P.
Eremeev, G.
Furuta, F.
Martinello, M.
Melnychuk, O.
Netepenko, A.
author_facet McGee, K.
Kim, S-H.
Ostroumov, P.
Eremeev, G.
Furuta, F.
Martinello, M.
Melnychuk, O.
Netepenko, A.
author_sort McGee, K.
collection CERN
description Upcoming projects requiring high-Q ~650 MHz medium-to-high-${\beta}$ elliptical cavities drive a need to understand magnetic RF loss mechanisms and mitigations in greater detail. High-temperature annealing and fast-cooldowns have proven effective techniques for promoting magnetic flux expulsion in cavities, however the extent of their effectiveness has been observed to vary between niobium material lot and vendor. We explore the fast-cooldown method, and high-temperature annealing (900{\deg}C) in 644-650 MHz cavities fabricated from two different niobium vendors: Tokyo-Denkai, and Ningxia. which promote flux-expulsion efficiency. Using EBSD and PPMS methods, we aim to trace cavity flux expulsion efficiency to specific, measurable properties of the bulk niobium material, which, if identified, can lead to methods by which the flux expulsion properties of Nb material can be predicted prior to cavity fabrication, and can enable fine-tuning of cavity temperature treatments.
id cern-2865060
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28650602023-10-03T15:53:14Zhttp://cds.cern.ch/record/2865060engMcGee, K.Kim, S-H.Ostroumov, P.Eremeev, G.Furuta, F.Martinello, M.Melnychuk, O.Netepenko, A.Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavitiesphysics.acc-phAccelerators and Storage RingsUpcoming projects requiring high-Q ~650 MHz medium-to-high-${\beta}$ elliptical cavities drive a need to understand magnetic RF loss mechanisms and mitigations in greater detail. High-temperature annealing and fast-cooldowns have proven effective techniques for promoting magnetic flux expulsion in cavities, however the extent of their effectiveness has been observed to vary between niobium material lot and vendor. We explore the fast-cooldown method, and high-temperature annealing (900{\deg}C) in 644-650 MHz cavities fabricated from two different niobium vendors: Tokyo-Denkai, and Ningxia. which promote flux-expulsion efficiency. Using EBSD and PPMS methods, we aim to trace cavity flux expulsion efficiency to specific, measurable properties of the bulk niobium material, which, if identified, can lead to methods by which the flux expulsion properties of Nb material can be predicted prior to cavity fabrication, and can enable fine-tuning of cavity temperature treatments.FERMILAB-CONF-23-273-TDarXiv:2307.05813oai:cds.cern.ch:28650602023-07-11
spellingShingle physics.acc-ph
Accelerators and Storage Rings
McGee, K.
Kim, S-H.
Ostroumov, P.
Eremeev, G.
Furuta, F.
Martinello, M.
Melnychuk, O.
Netepenko, A.
Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title_full Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title_fullStr Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title_full_unstemmed Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title_short Flux Expulsion and Material Properties of Niobium Explored in 644-650 MHz Cavities
title_sort flux expulsion and material properties of niobium explored in 644-650 mhz cavities
topic physics.acc-ph
Accelerators and Storage Rings
url http://cds.cern.ch/record/2865060
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