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A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE

A new decay-spectroscopy station (DSS) has been developed to be coupled to the collinear resonance ionization spectroscopy (CRIS) beam line at CERN-ISOLDE. The system uses a rotatable wheel with ten 20@mg/cm^2 carbon foils as beam implantation sites for the efficient measurement of charged decay pro...

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Autores principales: Rajabali, M.M, Billowes, J, Bissell, M.L, Cocolios, T.E, De Schepper, S, Dewolf, K, Flanagan, K.T, Le Blanc, F, Lynch, K.M, Marsh, B.A, Mason, P.J.R, Matea, I, Neyens, G, Papuga, J, Procter, T.J, Rothe, S, Simpson, G.S, Smith, A.J, Stroke, H.H, Verney, D, Walker, P.M, Wendt, K, Wood, R.T
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2012.12.090
http://cds.cern.ch/record/1709392
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author Rajabali, M.M
Billowes, J
Bissell, M.L
Cocolios, T.E
De Schepper, S
Dewolf, K
Flanagan, K.T
Le Blanc, F
Lynch, K.M
Marsh, B.A
Mason, P.J.R
Matea, I
Neyens, G
Papuga, J
Procter, T.J
Rothe, S
Simpson, G.S
Smith, A.J
Stroke, H.H
Verney, D
Walker, P.M
Wendt, K
Wood, R.T
author_facet Rajabali, M.M
Billowes, J
Bissell, M.L
Cocolios, T.E
De Schepper, S
Dewolf, K
Flanagan, K.T
Le Blanc, F
Lynch, K.M
Marsh, B.A
Mason, P.J.R
Matea, I
Neyens, G
Papuga, J
Procter, T.J
Rothe, S
Simpson, G.S
Smith, A.J
Stroke, H.H
Verney, D
Walker, P.M
Wendt, K
Wood, R.T
author_sort Rajabali, M.M
collection CERN
description A new decay-spectroscopy station (DSS) has been developed to be coupled to the collinear resonance ionization spectroscopy (CRIS) beam line at CERN-ISOLDE. The system uses a rotatable wheel with ten 20@mg/cm^2 carbon foils as beam implantation sites for the efficient measurement of charged decay products. Silicon detectors are placed on either side of the carbon foil in an optimal geometry to cover a large solid angle for detecting these charged particles. In addition to the silicon detectors at the on-beam axis position, a second pair of off-beam axis detectors are placed at the wheel position 108^o away, allowing longer-lived species to be studied. Up to three high purity germanium detectors can be placed around the chamber for particle-gamma correlated measurement. The radioactive beam is transported through the CRIS beam line before implantation into a carbon foil at the DSS. All materials used in the DSS are UHV-compatible to maintain high vacuum conditions required by the CRIS beam line. This paper describes the DSS and presents the first data collected at the setup during the commissioning run with ^2^2^1Fr.
id cern-1709392
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-17093922019-09-30T06:29:59Zdoi:10.1016/j.nima.2012.12.090http://cds.cern.ch/record/1709392engRajabali, M.MBillowes, JBissell, M.LCocolios, T.EDe Schepper, SDewolf, KFlanagan, K.TLe Blanc, FLynch, K.MMarsh, B.AMason, P.J.RMatea, INeyens, GPapuga, JProcter, T.JRothe, SSimpson, G.SSmith, A.JStroke, H.HVerney, DWalker, P.MWendt, KWood, R.TA dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDEDetectors and Experimental TechniquesA new decay-spectroscopy station (DSS) has been developed to be coupled to the collinear resonance ionization spectroscopy (CRIS) beam line at CERN-ISOLDE. The system uses a rotatable wheel with ten 20@mg/cm^2 carbon foils as beam implantation sites for the efficient measurement of charged decay products. Silicon detectors are placed on either side of the carbon foil in an optimal geometry to cover a large solid angle for detecting these charged particles. In addition to the silicon detectors at the on-beam axis position, a second pair of off-beam axis detectors are placed at the wheel position 108^o away, allowing longer-lived species to be studied. Up to three high purity germanium detectors can be placed around the chamber for particle-gamma correlated measurement. The radioactive beam is transported through the CRIS beam line before implantation into a carbon foil at the DSS. All materials used in the DSS are UHV-compatible to maintain high vacuum conditions required by the CRIS beam line. This paper describes the DSS and presents the first data collected at the setup during the commissioning run with ^2^2^1Fr.oai:cds.cern.ch:17093922013
spellingShingle Detectors and Experimental Techniques
Rajabali, M.M
Billowes, J
Bissell, M.L
Cocolios, T.E
De Schepper, S
Dewolf, K
Flanagan, K.T
Le Blanc, F
Lynch, K.M
Marsh, B.A
Mason, P.J.R
Matea, I
Neyens, G
Papuga, J
Procter, T.J
Rothe, S
Simpson, G.S
Smith, A.J
Stroke, H.H
Verney, D
Walker, P.M
Wendt, K
Wood, R.T
A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title_full A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title_fullStr A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title_full_unstemmed A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title_short A dedicated decay-spectroscopy station for the collinear resonance ionization experiment at ISOLDE
title_sort dedicated decay-spectroscopy station for the collinear resonance ionization experiment at isolde
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2012.12.090
http://cds.cern.ch/record/1709392
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