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Quench Propagation Ignition using Single-Mode Diode Laser

The stability of NbTi-based multifilamentary composite wires subjected to local heat disturbances of short durations is studied in pool boiling helium conditions. A new type of heater is being developed to characterize the superconducting to normal state transition. It relies on a single-mode Diode...

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Detalles Bibliográficos
Autores principales: Trillaud, F, Ayela, F, Devred, Arnaud, Fratini, M, Leboeuf, D, Tixador, P
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:http://cds.cern.ch/record/832898
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author Trillaud, F
Ayela, F
Devred, Arnaud
Fratini, M
Leboeuf, D
Tixador, P
author_facet Trillaud, F
Ayela, F
Devred, Arnaud
Fratini, M
Leboeuf, D
Tixador, P
author_sort Trillaud, F
collection CERN
description The stability of NbTi-based multifilamentary composite wires subjected to local heat disturbances of short durations is studied in pool boiling helium conditions. A new type of heater is being developed to characterize the superconducting to normal state transition. It relies on a single-mode Diode Laser with an optical fiber illuminating the wire surface. This first paper focuses mainly on the feasibility of this new heater technology and eventually discusses the difficulties related to it. A small overview of Diode Lasers and optical fibers revolving around our application is given. Then, we describe the experimental setup, and present some recorded voltage traces of transition and recovery processes. In addition, we present also some energy and Normal Zone Propagation Velocity data and we outline ameliorations that will be done to the system.
id cern-832898
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2005
record_format invenio
spelling cern-8328982019-09-30T06:29:59Zhttp://cds.cern.ch/record/832898engTrillaud, FAyela, FDevred, ArnaudFratini, MLeboeuf, DTixador, PQuench Propagation Ignition using Single-Mode Diode LaserAccelerators and Storage RingsThe stability of NbTi-based multifilamentary composite wires subjected to local heat disturbances of short durations is studied in pool boiling helium conditions. A new type of heater is being developed to characterize the superconducting to normal state transition. It relies on a single-mode Diode Laser with an optical fiber illuminating the wire surface. This first paper focuses mainly on the feasibility of this new heater technology and eventually discusses the difficulties related to it. A small overview of Diode Lasers and optical fibers revolving around our application is given. Then, we describe the experimental setup, and present some recorded voltage traces of transition and recovery processes. In addition, we present also some energy and Normal Zone Propagation Velocity data and we outline ameliorations that will be done to the system.CERN-AT-2005-001-MASoai:cds.cern.ch:8328982005-03-24
spellingShingle Accelerators and Storage Rings
Trillaud, F
Ayela, F
Devred, Arnaud
Fratini, M
Leboeuf, D
Tixador, P
Quench Propagation Ignition using Single-Mode Diode Laser
title Quench Propagation Ignition using Single-Mode Diode Laser
title_full Quench Propagation Ignition using Single-Mode Diode Laser
title_fullStr Quench Propagation Ignition using Single-Mode Diode Laser
title_full_unstemmed Quench Propagation Ignition using Single-Mode Diode Laser
title_short Quench Propagation Ignition using Single-Mode Diode Laser
title_sort quench propagation ignition using single-mode diode laser
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/832898
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AT ayelaf quenchpropagationignitionusingsinglemodediodelaser
AT devredarnaud quenchpropagationignitionusingsinglemodediodelaser
AT fratinim quenchpropagationignitionusingsinglemodediodelaser
AT leboeufd quenchpropagationignitionusingsinglemodediodelaser
AT tixadorp quenchpropagationignitionusingsinglemodediodelaser