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RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility

RAPTOR, Resonance ionization spectroscopy And Purification Traps for Optimized spectRoscopy, is a new collinear resonance ionization spectroscopy device constructed at the Ion Guide Isotope Separator On-Line (IGISOL) facility at the University of Jyväskylä, Finland. By operating at beam energies of...

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Autores principales: Kujanpää, S., Raggio, A., de Groote, R.P., Athanasakis-Kaklamanakis, M., Block, M., Candiello, A., Gins, W., Koszorús, Á., Moore, I.D., Reponen, M., Warbinek, J.
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2023.05.014
http://cds.cern.ch/record/2862104
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author Kujanpää, S.
Raggio, A.
de Groote, R.P.
Athanasakis-Kaklamanakis, M.
Block, M.
Candiello, A.
Gins, W.
Koszorús, Á.
Moore, I.D.
Reponen, M.
Warbinek, J.
author_facet Kujanpää, S.
Raggio, A.
de Groote, R.P.
Athanasakis-Kaklamanakis, M.
Block, M.
Candiello, A.
Gins, W.
Koszorús, Á.
Moore, I.D.
Reponen, M.
Warbinek, J.
author_sort Kujanpää, S.
collection CERN
description RAPTOR, Resonance ionization spectroscopy And Purification Traps for Optimized spectRoscopy, is a new collinear resonance ionization spectroscopy device constructed at the Ion Guide Isotope Separator On-Line (IGISOL) facility at the University of Jyväskylä, Finland. By operating at beam energies of under 10keV, the footprint of the experiment is reduced compared to more traditional collinear laser spectroscopy beamlines. In addition, RAPTOR is coupled to the JYFLTRAP Penning trap mass spectrometer, opening a window to laser-assisted nuclear-state selective purification, serving not only the mass measurement program, but also supporting post-trap decay spectroscopy experiments. Finally, the low-energy ion beams used for RAPTOR will enable high-precision laser-radiofrequency double-resonance experiments, resulting in spectroscopy with linewidths below 1 MHz. In this contribution, the technical layout of RAPTOR and a selection of ion-beam optical simulations for the device are presented, along with a discussion of the current status of the commissioning experiments.
id cern-2862104
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28621042023-09-23T06:09:07Zdoi:10.1016/j.nimb.2023.05.014http://cds.cern.ch/record/2862104engKujanpää, S.Raggio, A.de Groote, R.P.Athanasakis-Kaklamanakis, M.Block, M.Candiello, A.Gins, W.Koszorús, Á.Moore, I.D.Reponen, M.Warbinek, J.RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facilitynucl-exNuclear Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesRAPTOR, Resonance ionization spectroscopy And Purification Traps for Optimized spectRoscopy, is a new collinear resonance ionization spectroscopy device constructed at the Ion Guide Isotope Separator On-Line (IGISOL) facility at the University of Jyväskylä, Finland. By operating at beam energies of under 10keV, the footprint of the experiment is reduced compared to more traditional collinear laser spectroscopy beamlines. In addition, RAPTOR is coupled to the JYFLTRAP Penning trap mass spectrometer, opening a window to laser-assisted nuclear-state selective purification, serving not only the mass measurement program, but also supporting post-trap decay spectroscopy experiments. Finally, the low-energy ion beams used for RAPTOR will enable high-precision laser-radiofrequency double-resonance experiments, resulting in spectroscopy with linewidths below 1 MHz. In this contribution, the technical layout of RAPTOR and a selection of ion-beam optical simulations for the device are presented, along with a discussion of the current status of the commissioning experiments.RAPTOR, Resonance ionization spectroscopy And Purification Traps for Optimized spectRoscopy, is a new collinear resonance ionization spectroscopy device constructed at the Ion Guide Isotope Separator On-Line (IGISOL) facility at the University of Jyväskylä, Finland. By operating at beam energies of under 10 keV, the footprint of the experiment is reduced compared to more traditional collinear laser spectroscopy beamlines. In addition, RAPTOR is coupled to the JYFLTRAP Penning trap mass spectrometer, opening a window to laser-assisted nuclear-state selective purification, serving not only the mass measurement program, but also supporting post-trap decay spectroscopy experiments. Finally, the low-energy ion beams used for RAPTOR will enable high-precision laser-radiofrequency double-resonance experiments, resulting in spectroscopy with linewidths below 1 MHz. In this contribution, the technical layout of RAPTOR and a selection of ion-beam optical simulations for the device are presented, along with a discussion of the current status of the commissioning experiments.arXiv:2302.14637oai:cds.cern.ch:28621042023-02-17
spellingShingle nucl-ex
Nuclear Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Kujanpää, S.
Raggio, A.
de Groote, R.P.
Athanasakis-Kaklamanakis, M.
Block, M.
Candiello, A.
Gins, W.
Koszorús, Á.
Moore, I.D.
Reponen, M.
Warbinek, J.
RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title_full RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title_fullStr RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title_full_unstemmed RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title_short RAPTOR: A new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the IGISOL facility
title_sort raptor: a new collinear laser ionization spectroscopy and laser-radiofrequency double-resonance experiment at the igisol facility
topic nucl-ex
Nuclear Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nimb.2023.05.014
http://cds.cern.ch/record/2862104
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