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New techniques at ISOLDE-2

Experiments at the reconstructed on-line isotope separator facility ISOLDE-2 at the CERN 600 MeV synchrocyclotron are now in progress. Over the past year the extracted proton beam has been raised to 1.3 mu A, and the design value of 5 mu A is now within reach. The target and ion-source technology de...

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Detalles Bibliográficos
Autores principales: Ravn, H L, Carraz, L C, Denimal, J, Kugler, E, Skarestad, M, Sundell, S, Westgaard, L
Lenguaje:eng
Publicado: 1976
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0029-554X(76)90684-4
http://cds.cern.ch/record/264756
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author Ravn, H L
Carraz, L C
Denimal, J
Kugler, E
Skarestad, M
Sundell, S
Westgaard, L
author_facet Ravn, H L
Carraz, L C
Denimal, J
Kugler, E
Skarestad, M
Sundell, S
Westgaard, L
author_sort Ravn, H L
collection CERN
description Experiments at the reconstructed on-line isotope separator facility ISOLDE-2 at the CERN 600 MeV synchrocyclotron are now in progress. Over the past year the extracted proton beam has been raised to 1.3 mu A, and the design value of 5 mu A is now within reach. The target and ion-source technology developed before the reconstruction has been further improved so as to permit the utilisation of the high proton- beam intensities and to increase the range of elements available for study to 30. With a proton-beam intensity of 0.7 mu A the radioactive Cs/sup +/ beams after mass separation have increased by a factor of 300 and, in the most favoured cases, are exceeding 6 nA. This permits the visualisation of the separated radioactive ion beams by means of the usual beam scanners. A new target concept, a finely divided metal powder at ultra-high temperatures, features a short delay component which enhances the yield of very short-lived products. The new beam- optical system supplies four measuring stations simultaneously and allows up to ten groups to take data during an ISOLDE run (typically 100 h). (13 refs).
id cern-264756
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1976
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spelling cern-2647562019-09-30T06:29:59Zdoi:10.1016/0029-554X(76)90684-4http://cds.cern.ch/record/264756engRavn, H LCarraz, L CDenimal, JKugler, ESkarestad, MSundell, SWestgaard, LNew techniques at ISOLDE-2Nuclear Physics - ExperimentDetectors and Experimental TechniquesExperiments at the reconstructed on-line isotope separator facility ISOLDE-2 at the CERN 600 MeV synchrocyclotron are now in progress. Over the past year the extracted proton beam has been raised to 1.3 mu A, and the design value of 5 mu A is now within reach. The target and ion-source technology developed before the reconstruction has been further improved so as to permit the utilisation of the high proton- beam intensities and to increase the range of elements available for study to 30. With a proton-beam intensity of 0.7 mu A the radioactive Cs/sup +/ beams after mass separation have increased by a factor of 300 and, in the most favoured cases, are exceeding 6 nA. This permits the visualisation of the separated radioactive ion beams by means of the usual beam scanners. A new target concept, a finely divided metal powder at ultra-high temperatures, features a short delay component which enhances the yield of very short-lived products. The new beam- optical system supplies four measuring stations simultaneously and allows up to ten groups to take data during an ISOLDE run (typically 100 h). (13 refs).oai:cds.cern.ch:2647561976-05-03
spellingShingle Nuclear Physics - Experiment
Detectors and Experimental Techniques
Ravn, H L
Carraz, L C
Denimal, J
Kugler, E
Skarestad, M
Sundell, S
Westgaard, L
New techniques at ISOLDE-2
title New techniques at ISOLDE-2
title_full New techniques at ISOLDE-2
title_fullStr New techniques at ISOLDE-2
title_full_unstemmed New techniques at ISOLDE-2
title_short New techniques at ISOLDE-2
title_sort new techniques at isolde-2
topic Nuclear Physics - Experiment
Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/0029-554X(76)90684-4
http://cds.cern.ch/record/264756
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AT kuglere newtechniquesatisolde2
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AT sundells newtechniquesatisolde2
AT westgaardl newtechniquesatisolde2