CERN Accelerating science

CERN Document Server 22 elementer funnet  1 - 10nesteslutt  gå til element: Søket tok 0.58 sekunder. 
1.
Comparison of bulk and interfacial diffusion of $^{8}Li^{+}$ in solid-state battery materials with ${\beta}$-NMR spectroscopy / Rees, Gregory (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Payne, Batholomew (Department of Materials, University of Oxford, Oxford, UK;The Faraday Institution, Didcot, UK) ; Sparks, Amy (Experimental Physics Department, CERN, Geneva, Switzerland) ; Azaryan, Nikolay (Experimental Physics Department, CERN, Geneva, Switzerland; Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Baranowski, Mikolaj (Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Bissell, Mark (Experimental Physics Department, CERN, Geneva, Switzerland) ; Bruce, Peter (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Chojnacki, Mateusz (Experimental Physics Department, CERN, Geneva, Switzerland; Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Mauro, Pasta (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Pesek, Michael (Experimental Physics Department, CERN, Geneva, Switzerland) et al.
CERN-INTC-2024-056 ; INTC-P-713.
- 2024.
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2.
Investigation of the nucleon distribution on the surface of radioactive xenon nuclei using antiprotons / Aberle, Oliver (CERN, 1211 Geneva 23, Switzerland) ; Aumann, Tom (Institut für Kernphysik, Technische Universität Darmstadt, 64289 Darmstadt, Germany) ; Azaryan, Nikolay (CERN, 1211 Geneva 23, Switzerland) ; Bissell, Mark Lloyd (CERN, 1211 Geneva 23, Switzerland) ; Boine-Frankenheim, Oliver (Institut für Teilchenbeschleunigung und elektromagnetische Felder, Technische Universität Darmstadt, 64289 Darmstadt, Germany) ; Bonnes, Uwe (Institut für Kernphysik, Technische Universität Darmstadt, 64289 Darmstadt, Germany) ; Butin, Francois (CERN, 1211 Geneva 23, Switzerland) ; Chiggiato, Paolo (CERN, 1211 Geneva 23, Switzerland) ; De Gersem, Herbert (Institut für Teilchenbeschleunigung und elektromagnetische Felder, Technische Universität Darmstadt, 64289 Darmstadt, Germany) ; De Oliveira, Rui (CERN, 1211 Geneva 23, Switzerland) et al.
CERN-INTC-2024-055 ; INTC-P-712.
- 2024
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3.
Developments at the CERN-ISOLDE Offline 2 mass separator / Schuett, Maximilian (CERN) ; Au, Mia (CERN ; Mainz U.) ; Bissell, Mark (CERN) ; Bidault, Niels (CERN) ; Koliatos, Alexandros (CERN) ; Le, Line (CERN) ; Azaryan, Nikolay (CERN) ; Heinke, Reinhard (CERN) ; Chrysalidis, Katerina (CERN) ; Rothe, Sebastian (CERN)
The Offline 2 mass separator laboratory is part of the CERN-ISOLDE Offline facilities - a suite of installations required to perform essential quality control on target and ion source units before irradiation at CERN-ISOLDE (Catherall et al., 2017) [1]. The facility is also used for extended preparatory offline studies as a prerequisite before conducting any beam development on-line, especially establishing systematic effects. [...]
2023 - 4 p.
Fulltext: PDF;
In : 19th International Conference on Electromagnetic Isotope Separators and Related Topics (EMIS 2022), Daejeon, Korea, 3 - 7 Oct 2022, pp.82-85
4.
$\beta$-decay spectroscopy with laser-polarised beams of neutron-rich potassium isotopes / Piersa-Siłkowska, Monika (CERN) ; Madurga, Miguel (University of Tennessee) ; Kowalska, Magdalena (CERN) ; Azaryan, Nikolay (CERN) ; Baranowski, Mikołaj (Adam Mickiewicz University) ; Bissell, Mark (CERN) ; Chojnacki, Mateusz (CERN) ; Christie, James (University of Tennessee) ; Fijałkowska, Aleksandra (University of Warsaw) ; Grzywacz, Robert (University of Tennessee) et al.
CERN-INTC-2023-026 ; INTC-P-662.
- 2023.
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5.
The Offline 2 facility at ISOLDE, CERN / Ringvall Moberg, Annie
Offline 2 is the most recent mass separator beamline at the Isotope Separator On-line DEvice (ISOLDE) infrastructure, dedicated for developments of ion beam production and manipulations [...]
CERN-OPEN-2022-015 - 2022. - 10 p.


10.17181/CERN-OPEN-2022-015
6.
Proton-neutron pairing correlations in the self-conjugate nucleus $^{42}$Sc / Koszorus, Agota (Liverpool U.) ; Vormawah, Liam (Liverpool U.) ; Beerwerth, Randolf (Helmholtz Inst., Jena) ; Bissell, Mark (Manchester U.) ; Campbell, Paul (Manchester U.) ; Cheal, Bradley (Liverpool U.) ; Devlin, Charlie (Liverpool U.) ; Eronen, Tommi (Jyvaskyla U.) ; Fritzsche, Stephan (Helmholtz Inst., Jena) ; Geldhof, Sarina (Jyvaskyla U. ; Leuven U.) et al.
Collinear laser spectroscopy of the $N=Z=21$ self-conjugate nucleus $^{42}$Sc has been performed at the JYFL IGISOL IV facility in order to determine the change in nuclear mean-square charge radius between the $I^{\pi}=0^{+}$ ground state and the $I^{\pi}=7^{+}$ isomer via the measurement of the $^{42\mathrm{g},42\mathrm{m}}$Sc isomer shift. New multi-configurational Dirac-Fock calculations for the atomic mass shift and field shift factors have enabled a recalibration of the charge radii of the $^{42-46}$Sc isotopes which were measured previously. [...]
arXiv:2102.01988.- 2021-08-10 - 6 p. - Published in : Phys. Lett. B 819 (2021) 136439 Article from SCOAP3: PDF;
7.
Structural trends in atomic nuclei from laser spectroscopy of tin / Yordanov, Deyan T. (Orsay, IPN ; CERN) ; Rodríguez, Liss V. (Orsay, IPN ; Heidelberg, Max Planck Inst.) ; Balabanski, Dimiter L. (ELI-NP, Bucharest) ; Bieroń, Jacek (Jagiellonian U.) ; Bissell, Mark L. (Manchester U.) ; Blaum, Klaus (Heidelberg, Max Planck Inst.) ; Cheal, Bradley (Liverpool U.) ; Ekman, Jörgen (Malmo U.) ; Gaigalas, Gediminas (Vilnius U.) ; Garcia Ruiz, Ronald F. (CERN ; MIT) et al.
Tin is the chemical element with the largest number of stable isotopes. Its complete proton shell, comparable with the closed electron shells in the chemically inert noble gases, is not a mere precursor to extended stability; since the protons carry the nuclear charge, their spatial arrangement also drives the nuclear electromagnetism [...]
2020 - 9 p. - Published in : Commun. Phys. 3 (2020) 107 Accepted Author Manuscript: PDF; Fulltext from Publisher: PDF;
8.
Hyperfine structure and nuclear magnetic moments of the praseodymium isotopes {135,136,137}^Pr / IS517 Collaboration
Collinear laser spectroscopy was applied to measure the hyperfine structure of {135−137}^Pr at ISOLDE/CERN. Combined with measurements of the stable isotope {141}^Pr at the TRIGA-SPEC setup in Mainz we were able to determine the magnetic moments of the neutron-deficient isotopes {135}^Pr, {136}^Pr and {137}^Pr for the first time..
2019 - Published in : 10.1007/s10751-019-1608-5 Fulltext: PDF;
9.
Nuclear quadrupole moments and charge radii of the "_{51}"Sb isotopes via collinear laser spectroscopy / Xu, Zhengyu (KU Leuven, Instituut voor Kern-en Stralingsfysica, B-3001 Leuven, Belgium) ; Yordanov, Deyan (Institute de Physique Nucléaire, CNRS-IN2P3, Université Paris-Sud, Université Paris-Saclay, 91406 Orsay, France) ; Balabanski, dimiter (ELI-NP, Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering, 077125 Magurele, Romania) ; Billowes, Jonathan (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) ; Bissell, Mark (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) ; Blaum, Klaus (Max-Plank-Institut für Kernphysik, D-69117 Heidelberg, Germany) ; Cheal, Bradley (Oliver Lodge Laboratory, Oxford Street, University of Liverpool, L69 7ZE, United Kingdom) ; Malbrunot, Stephan (Physics Department, CERN, CH-1211 Geneva 23, Switzerland) ; Franchoo, Serge (Institute de Physique Nucléaire, CNRS-IN2P3, Université Paris-Sud, Université Paris-Saclay, 91406 Orsay, France) ; Garcia Ruiz, Ronald Fernando (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) et al.
CERN-INTC-2017-010 ; INTC-CLL-028.
- 2017.
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10.
Nuclear quadrupole moments and charge radii of the $_{51}$Sb isotopes via collinear laser spectroscopy / Xu, Zhengyu (KU Leuven, Instituut voor Kern-en Stralingsfysica, B-3001 Leuven, Belgium) ; Yordanov, Deyan (Institute de Physique Nucléaire, CNRS-IN2P3, Université Paris-Sud, Université Paris-Saclay, 91406 Orsay, France) ; Balabanski, dimiter (ELI-NP, Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering, 077125 Magurele, Romania) ; Billowes, Jonathan (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) ; Bissell, Mark (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) ; Blaum, Klaus (Max-Plank-Institut für Kernphysik, D-69117 Heidelberg, Germany) ; Cheal, Bradley (Oliver Lodge Laboratory, Oxford Street, University of Liverpool, L69 7ZE, United Kingdom) ; Malbrunot, Stephan (Physics Department, CERN, CH-1211 Geneva 23, Switzerland) ; Franchoo, Serge (Institute de Physique Nucléaire, CNRS-IN2P3, Université Paris-Sud, Université Paris-Saclay, 91406 Orsay, France) ; Garcia Ruiz, Ronald Fernando (School of Physics and Astronomy, The University of Manchester, Manchester, M13 9PL, UK) et al.
CERN-INTC-2016-054 ; INTC-P-484.
- 2016.
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