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An Alternative Scheme for Heavy Ion Driven Inertial Fusion

In order to achieve the required beam pulse length of about 5 ns necessary for ignition, present scenarios for Heavy Ion Driven Inertial Fusion (HIDIF) propose induction linacs for the final bunch com pression. This, because final compression does not appear to be possible in the rings because of th...

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Autor principal: Schönauer, Horst Otto
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/361733
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author Schönauer, Horst Otto
author_facet Schönauer, Horst Otto
author_sort Schönauer, Horst Otto
collection CERN
description In order to achieve the required beam pulse length of about 5 ns necessary for ignition, present scenarios for Heavy Ion Driven Inertial Fusion (HIDIF) propose induction linacs for the final bunch com pression. This, because final compression does not appear to be possible in the rings because of the huge velocity spread of the large bunches. In order to preserve a more economic in-ring, multi-pass buncher RF system, it is proposed to split these bunches into four families of sub-bunches, which are separated by gaps in energy. The target is located in the centre of the holding ring and the resul ting scenario is far more compact and economic than the one presently discussed [1].
id cern-361733
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
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spelling cern-3617332021-11-11T09:53:05Zhttp://cds.cern.ch/record/361733engSchönauer, Horst OttoAn Alternative Scheme for Heavy Ion Driven Inertial FusionAccelerators and Storage RingsIn order to achieve the required beam pulse length of about 5 ns necessary for ignition, present scenarios for Heavy Ion Driven Inertial Fusion (HIDIF) propose induction linacs for the final bunch com pression. This, because final compression does not appear to be possible in the rings because of the huge velocity spread of the large bunches. In order to preserve a more economic in-ring, multi-pass buncher RF system, it is proposed to split these bunches into four families of sub-bunches, which are separated by gaps in energy. The target is located in the centre of the holding ring and the resul ting scenario is far more compact and economic than the one presently discussed [1].CERN-PS-98-034-CAoai:cds.cern.ch:3617331998-08-06
spellingShingle Accelerators and Storage Rings
Schönauer, Horst Otto
An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title_full An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title_fullStr An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title_full_unstemmed An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title_short An Alternative Scheme for Heavy Ion Driven Inertial Fusion
title_sort alternative scheme for heavy ion driven inertial fusion
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/361733
work_keys_str_mv AT schonauerhorstotto analternativeschemeforheavyiondriveninertialfusion
AT schonauerhorstotto alternativeschemeforheavyiondriveninertialfusion