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Low-velocity transient-field technique with radioactive ion beams: g factor of the first excited 2$^{+}$ state in $^{72}$Zn
/ Illana, A (Madrid, Inst. Estructura Materia) ; Jungclaus, A (Madrid, Inst. Estructura Materia) ; Orlandi, R (Madrid, Inst. Estructura Materia) ; Perea, A (Madrid, Inst. Estructura Materia) ; Bauer, C (Darmstadt, Tech. Hochsch.) ; Briz, J A (Madrid, Inst. Estructura Materia) ; Egido, J L (Madrid, Autonoma U.) ; Gernhäuser, R (Munich, Tech. U.) ; Leske, J (Darmstadt, Tech. Hochsch.) ; Mücher, D (Munich, Tech. U.) et al.
The g factor of the first excited 2+ state in 72Zn has been measured using the transient-field (TF) technique in combination with Coulomb excitation in inverse kinematics. This experiment presents only the third successful application of the TF method to a short-lived radioactive beam in 10 y, highlighting the intricacies of applying this technique to present and future isotope separator on-line facilities. [...]
2014 - 11 p.
- Published in : Phys. Rev. C 89 (2014) 054316
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2.
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Axial and triaxial degrees of freedom in $^{72}$Zn
/ Hellgartner, S (Munich, Tech. U.) ; Mücher, D (Cologne U. ; Guelph U. ; TRIUMF) ; Wimmer, K (Darmstadt, GSI ; Madrid, Inst. Estructura Materia ; Tokyo U.) ; Bildstein, V (Guelph U.) ; Egido, J L (Madrid, Autonoma U.) ; Gernhäuser, R (Munich, Tech. U.) ; Krücken, R (LBNL, NSD) ; Nowak, A K (Munich, Tech. U.) ; Zielinska, M (IRFU, Saclay) ; Bauer, C (Darmstadt, Tech. U.) et al.
The unstable N=42 nucleus 72Zn has been studied using multiple safe Coulomb excitation in inverse kinematics. The experiment was performed at the REX-ISOLDE facility at CERN making first use of the silicon detector array C-REX in combination with the γ-ray spectrometer Miniball. [...]
2023 - 8 p.
- Published in : Phys. Lett. B 841 (2023) 137933
Fulltext: PDF;
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3.
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Coulomb excitation of $^{29,30}$Na: Mapping the borders of the island of inversion
/ Seidlitz, M (Cologne U.) ; Reiter, P (Cologne U.) ; Altenkirch, R (Cologne U.) ; Bastin, B (KU Leuven, Dept. Phys. Astron.) ; Bauer, C (Darmstadt, Tech. Hochsch.) ; Blazhev, A (Cologne U.) ; Bree, N (KU Leuven, Dept. Phys. Astron.) ; Bruyneel, B (Cologne U.) ; Butler, P A (Liverpool U.) ; Cederkäll, J (Lund U.) et al.
Nuclear shell evolution in neutron-rich Na nuclei around N=20 was studied by determining reduced transition probabilities, i.e., B(E2) and B(M1) values, in order to map the border of the island of inversion. To this end Coulomb-excitation experiments, employing radioactive 29,30Na beams with a final beam energy of 2.85 MeV/nucleon, were performed at REX-ISOLDE, CERN. [...]
2014 - 10 p.
- Published in : Phys. Rev. C 89 (2014) 024309
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4.
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Magnetic moments of Coulomb excited $2^{+}_{1}$ states for radioactive beams of $^{132,134,136}$Te and $^{138}$Xe isotopes at REX-ISOLDE
/ Leske, Joerg (Darmstadt, Tech. Hochsch.) ; Jungclaus, Andrea (Madrid, Inst. Estructura Materia) ; Speidel, K H (Bonn U., HISKP) ; Gernhäuser, R (Munich, Tech. U.) ; Kröll, T (Munich, Tech. U.) ; Lutter, R (Munich U.) ; Modamio, V (Madrid, Inst. Estructura Materia) ; Pietralla, N (Darmstadt, Tech. Hochsch.) ; Walker, J (Madrid, Inst. Estructura Materia)
INTC-P-166-ADD-1 ; CERN-INTC-2008-040.
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2008.
Original Document (INTC-P-166) - Fulltext
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6.
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Single-neutron orbits near $^{78}$Ni: Spectroscopy of the N=49 isotope $^{79}$Zn
/ Orlandi, R (Madrid, Inst. Estructura Materia ; Leuven U. ; West Scotland U. ; JAEA, Ibaraki ; SUPA, UK) ; Mücher, D (Munich, Tech. U.) ; Raabe, R (Leuven U.) ; Jungclaus, A (Madrid, Inst. Estructura Materia) ; Pain, S D (Oak Ridge) ; Bildstein, V (Munich, Tech. U.) ; Chapman, R (West Scotland U. ; SUPA, UK) ; de Angelis, G (INFN, Legnaro) ; Johansen, J G (Aarhus U.) ; Van Duppen, P (Leuven U.) et al.
Single-neutron states in the Z=30 , N=49 isotope 79 Zn have been populated using the 78 Zn(d, p) 79 Zn transfer reaction at REX-ISOLDE, CERN. The experimental setup allowed the combined detection of protons ejected in the reaction, and of γ rays emitted by 79 Zn. [...]
2015 - 5 p.
- Published in : Phys. Lett. B 740 (2015) 298-302
Elsevier Open Access article: PDF;
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7.
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Coulomb excitation and nucleon transfer reactions in the $^{132}$Sn region
/ Kröll, Th (Darmstadt, Tech. U.) ; Von Schmid, M (Darmstadt, Tech. U.) ; Pietralla, N (Darmstadt, Tech. U.) ; Leske, J (Darmstadt, Tech. U.) ; Möller, O (Darmstadt, Tech. U.) ; Bauer, C (Darmstadt, Tech. U.) ; Stahl, C (Darmstadt, Tech. U.) ; Rainovski, G (Darmstadt, Tech. U.) ; Krücken, R (Munich, Tech. U.) ; Bildstein, V (Munich, Tech. U.) et al.
CERN-INTC-2010-045 ; INTC-I-111.
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2010.
Fulltext
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Microscopic structure of coexisting $0^+$ states in $^{68}$Ni probed via two-neutron transfer
/ Flavigny, F (Orsay, IPN ; KU Leuven, Dept. Phys. Astron.) ; Elseviers, J (KU Leuven, Dept. Phys. Astron.) ; Andreyev, A N (York U., England ; JAEA, Ibaraki) ; Bauer, C (Darmstadt, Tech. Hochsch.) ; Bildstein, V (Guelph U.) ; Blazhev, A (Cologne U.) ; Brown, B A (Michigan State U., NSCL) ; De Witte, H (KU Leuven, Dept. Phys. Astron.) ; Diriken, J (KU Leuven, Dept. Phys. Astron. ; SCK-CEN, Mol) ; Fedosseev, V N (CERN) et al.
The structure of low-spin states originating from shape-coexisting configurations in $^{68}_{40}$Ni$_{28}$ was directly probed via the two-neutron transfer reaction $^{66}$Ni$(t,p)^{68}$Ni in inverse kinematics using a radioactive ion beam on a radioactive target. The direct feeding to the first excited 0$^+$ state was measured for center-of-mass angles 4°–16° and amounts to an integral of 4.2(16)% relative to the ground state. [...]
2019 - 6 p.
- Published in : Phys. Rev. C 99 (2019) 054332
Article from SCOAP3: PDF;
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9.
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Storage ring at HIE-ISOLDE : Technical Design Report
/ Aliotta, M (Edinburgh U.) ; Andreyev, A (West Scotland U.) ; Artemyev, A (Heidelberg U.) ; Atanasov, D (Sofiya U.) ; Aumann, T (Darmstadt, Tech. Hochsch. ; Darmstadt, GSI) ; Balabaski, D (Sofiya, Inst. Nucl. Res) ; Barzakh, A (St. Petersburg, INP) ; Batist, L (St. Petersburg, INP) ; Bernardes, A -P (CERN) ; Bernhardt, D (Giessen U.) et al.
CERN-INTC-2012-027; INTC-O-014.-
2012 - 151 p.
Miscellaneous; Technical design report. ISOLDE
- Published in : Eur. Phys. J. Spec. Top. 207 (2012) 1-117
Fulltext: PDF;
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