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A new beamline for laser spin-polarization at ISOLDE

A beamline dedicated to the production of laser-polarized radioactive beams has been constructed at ISOLDE, CERN. We present here different simulations leading to the design and construction of it, as well as technical details of the full setup and examples of the achieved polarizations for several...

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Detalles Bibliográficos
Autores principales: Gins, W., Harding, R.D., Baranowski, M., Bissell, M.L., Garcia Ruiz, R.F., Kowalska, M., Neyens, G., Pallada, S., Severijns, N., Velten, Ph., Wienholtz, F., Xu, Z.Y., Yang, X.F., Zakoucky, D.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2019.01.082
http://cds.cern.ch/record/2639258
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author Gins, W.
Harding, R.D.
Baranowski, M.
Bissell, M.L.
Garcia Ruiz, R.F.
Kowalska, M.
Neyens, G.
Pallada, S.
Severijns, N.
Velten, Ph.
Wienholtz, F.
Xu, Z.Y.
Yang, X.F.
Zakoucky, D.
author_facet Gins, W.
Harding, R.D.
Baranowski, M.
Bissell, M.L.
Garcia Ruiz, R.F.
Kowalska, M.
Neyens, G.
Pallada, S.
Severijns, N.
Velten, Ph.
Wienholtz, F.
Xu, Z.Y.
Yang, X.F.
Zakoucky, D.
author_sort Gins, W.
collection CERN
description A beamline dedicated to the production of laser-polarized radioactive beams has been constructed at ISOLDE, CERN. We present here different simulations leading to the design and construction of it, as well as technical details of the full setup and examples of the achieved polarizations for several radioisotopes. Beamline simulations show a good transmission through the entire line, in agreement with observations. Simulations of the induced nuclear spin-polarization as a function of atom–laser interaction length are presented for 26,28 Na, and for 35 Ar, which is studied in this work. Adiabatic spin rotation calculations of the spin-polarized ensemble of atoms, and how this influences the observed nuclear ensemble polarization, are also performed for the same nuclei. For 35 Ar, we show that multiple-frequency pumping enhances the ensemble polarization by a factor 1.85, in agreement with predictions from a rate equations model.
id cern-2639258
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-26392582023-03-14T18:40:41Zdoi:10.1016/j.nima.2019.01.082http://cds.cern.ch/record/2639258engGins, W.Harding, R.D.Baranowski, M.Bissell, M.L.Garcia Ruiz, R.F.Kowalska, M.Neyens, G.Pallada, S.Severijns, N.Velten, Ph.Wienholtz, F.Xu, Z.Y.Yang, X.F.Zakoucky, D.A new beamline for laser spin-polarization at ISOLDEphysics.ins-detDetectors and Experimental TechniquesA beamline dedicated to the production of laser-polarized radioactive beams has been constructed at ISOLDE, CERN. We present here different simulations leading to the design and construction of it, as well as technical details of the full setup and examples of the achieved polarizations for several radioisotopes. Beamline simulations show a good transmission through the entire line, in agreement with observations. Simulations of the induced nuclear spin-polarization as a function of atom–laser interaction length are presented for 26,28 Na, and for 35 Ar, which is studied in this work. Adiabatic spin rotation calculations of the spin-polarized ensemble of atoms, and how this influences the observed nuclear ensemble polarization, are also performed for the same nuclei. For 35 Ar, we show that multiple-frequency pumping enhances the ensemble polarization by a factor 1.85, in agreement with predictions from a rate equations model.A beamline dedicated to the production of laser-polarized radioactive beams has been constructed at ISOLDE, CERN. We present here different simulations leading to the design and construction of the setup, as well as technical details of the full setup and examples of the achieved polarizations for several radioisotopes. Beamline simulations show a good transmission through the entire line, in agreement with observations. Simulations of the induced nuclear spin-polarization as a function of atom-laser interaction length are presented for $^{26,28}$Na, [1] and for $^{35}$Ar, which is studied in this work. Adiabatic spin rotation of the spin-polarized ensemble of atoms, and how this influences the observed nuclear ensemble polarization, are also performed for the same nuclei. For $^{35}$Ar, we show that multiple-frequency pumping enhances the ensemble polarization by a factor 1.85, in agreement with predictions from a rate equations model. [1] J. Phys. G: Nucl. Part. Phys./1744084005arXiv:1809.04385oai:cds.cern.ch:26392582018-09-12
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Gins, W.
Harding, R.D.
Baranowski, M.
Bissell, M.L.
Garcia Ruiz, R.F.
Kowalska, M.
Neyens, G.
Pallada, S.
Severijns, N.
Velten, Ph.
Wienholtz, F.
Xu, Z.Y.
Yang, X.F.
Zakoucky, D.
A new beamline for laser spin-polarization at ISOLDE
title A new beamline for laser spin-polarization at ISOLDE
title_full A new beamline for laser spin-polarization at ISOLDE
title_fullStr A new beamline for laser spin-polarization at ISOLDE
title_full_unstemmed A new beamline for laser spin-polarization at ISOLDE
title_short A new beamline for laser spin-polarization at ISOLDE
title_sort new beamline for laser spin-polarization at isolde
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2019.01.082
http://cds.cern.ch/record/2639258
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