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Publication
Featured researches published by F. Rotaru.
Physical Review Letters | 2012
F. Rotaru; F. Negoita; S. Grévy; J. Mrazek; S. M. Lukyanov; F. Nowacki; A. Poves; O. Sorlin; C. Borcea; R. Borcea; A. Buta; L. Caceres; S. Calinescu; R. Chevrier; Zs. Dombrádi; J. M. Daugas; D. Lebhertz; Y. Penionzhkevich; C. Petrone; D. Sohler; M. Stanoiu; J. C. Thomas
The 02(+) state in 34Si has been populated at the GANIL-LISE3 facility through the β decay of a newly discovered 1(+) isomer in 34Al of 26(1) ms half-life. The simultaneous detection of e(+)e(-) pairs allowed the determination of the excitation energy E(02(+))=2719(3) keV and the half-life T(1/2)=19.4(7) ns, from which an electric monopole strength of ρ(2)(E0)=13.0(0.9)×10(-3) was deduced. The 2(1)(+) state is observed to decay both to the 0(1)(+) ground state and to the newly observed 0(2)(+) state [via a 607(2) keV transition] with a ratio R(2(1)(+)→0(1)(+)/2(1)(+)→0(2)(+))=1380(717). Gathering all information, a weak mixing with the 0(1)(+) and a large deformation parameter of β=0.29(4) are found for the 0(2)(+) state, in good agreement with shell model calculations using a new SDPF-U-MIX interaction allowing np-nh excitations across the N=20 shell gap.
Physical Review Letters | 2012
F. Rotaru; F. Negoita; S. Grévy; J. Mrazek; S. M. Lukyanov; F. Nowacki; A. Poves; O. Sorlin; C. Borcea; R. Borcea; A. Buta; L. Caceres; S. Calinescu; R. Chevrier; Zs. Dombrádi; J. M. Daugas; D. Lebhertz; Y. Penionzhkevich; C. Petrone; D. Sohler; M. Stanoiu; J. C. Thomas
The 02(+) state in 34Si has been populated at the GANIL-LISE3 facility through the β decay of a newly discovered 1(+) isomer in 34Al of 26(1) ms half-life. The simultaneous detection of e(+)e(-) pairs allowed the determination of the excitation energy E(02(+))=2719(3) keV and the half-life T(1/2)=19.4(7) ns, from which an electric monopole strength of ρ(2)(E0)=13.0(0.9)×10(-3) was deduced. The 2(1)(+) state is observed to decay both to the 0(1)(+) ground state and to the newly observed 0(2)(+) state [via a 607(2) keV transition] with a ratio R(2(1)(+)→0(1)(+)/2(1)(+)→0(2)(+))=1380(717). Gathering all information, a weak mixing with the 0(1)(+) and a large deformation parameter of β=0.29(4) are found for the 0(2)(+) state, in good agreement with shell model calculations using a new SDPF-U-MIX interaction allowing np-nh excitations across the N=20 shell gap.
Physical Review Letters | 2010
C. Force; S. Grévy; L. Gaudefroy; O. Sorlin; L. Caceres; F. Rotaru; J. Mrazek; N. L. Achouri; J. C. Angélique; F. Azaiez; B. Bastin; R. Borcea; A. Buta; J. M. Daugas; Z. Dlouhy; Zs. Dombrádi; F. de Oliveira; F. Negoita; Y. Penionzhkevich; M. G. Saint-Laurent; D. Sohler; M. Stanoiu; I. Stefan; C. Stodel; F. Nowacki
The structure of 44S has been studied by using delayed γ and electron spectroscopy. The decay rates of the 02+ isomeric state to the 2(1)+ and 0(1)+ states, measured for the first time, lead to a reduced transition probability B(E2: 2(1)+→0(2)+)=8.4(26) e(2) fm4 and a monopole strength ρ2(E0: 0(2)+→0(1)+)=8.7(7)×10(-3). Comparisons to shell model calculations point towards prolate-spherical shape coexistence, and a two-level mixing model is used to extract a weak mixing between the two configurations.
Physical Review C | 2015
L. Caceres; A. Lepailleur; O. Sorlin; M. Stanoiu; D. Sohler; Zs. Dombrádi; S. K. Bogner; B. A. Brown; H. Hergert; J. D. Holt; A. Schwenk; F. Azaiez; B. Bastin; C. Borcea; R. Borcea; C. Bourgeois; Z. Elekes; Zs. Fueloep; S. Grévy; L. Gaudefroy; G. F. Grinyer; D. Guillemaud-Mueller; F. Ibrahim; A. Kerek; A. Krasznahorkay; M. Lewitowicz; S. M. Lukyanov; J. Mrazek; F. Negoita; F. de Oliveira
The structure of the
Physical Review C | 2017
C. Fontbonne; P. Ujic; F. de Oliveira Santos; X. Fléchard; F. Rotaru; N. L. Achouri; V. Girard Alcindor; B. Bastin; F. Boulay; J. B. Briand; A. M. Sánchez-Benítez; H. Bouzomita; C. Borcea; R. Borcea; B. Blank; B. Carniol; I. Celikovic; P. Delahaye; F. Delaunay; D. Etasse; G. Fremont; J. M. Fontbonne; G. F. Grinyer; J. Harang; J. Hommet; A. Jevremović; M. Lewitowicz; I. Martel; J. Mrazek; M. Parlog
^{24}
Bulletin of The Russian Academy of Sciences: Physics | 2016
B. Erdemchimeg; A. G. Artukh; S. Davaa; S. A. Klygin; G. A. Kononenko; G. Khuukhenkhuu; D. A. Kyslukha; S. M. Lukyanov; T. I. Mikhailova; Yu. M. Sereda; Yu. E. Penionzhkevich; A. N. Vorontzov; C. Borcea; F. Rotaru; M. Stanoiu
F nucleus has been studied at GANIL using the
Physical Review C | 2015
L. Caceres; A. Lepailleur; O. Sorlin; M. Stanoiu; D. Sohler; Z. Dombradi; S. K. Bogner; B. A. Brown; H. Hergert; J. D. Holt; A. Schwenk; F. Azaiez; B. Bastin; C. Borcea; R. Borcea; C. Bourgeois; Z. Elekes; Zs. Fülöp; S. Grévy; L. Gaudefroy; G. F. Grinyer; D. Guillemaud-Mueller; F. Ibrahim; A. Kerek; A. Krasznahorkay; M. Lewitowicz; S. M. Lukyanov; J. Mrazek; F. Negoita; De Oliveira,-Santos, F.
\beta
Physical Review C | 2015
L. Caceres; Zs. Dombrádi; F. Negoita; G. Sletten; S. M. Lukyanov; O. Sorlin; B. Bastin; M. Stanoiu; Zs. Podolyák; M. G. Saint-Laurent; P. Roussel-Chomaz; A. Schwenk; Zs. Fülöp; Yu. E. Penionzhkevich; C. Bourgeois; J. D. Holt; H. Savajols; M.-G. Porquet; A. Lepailleur; H. Hergert; C. Borcea; C. Timis; M. Lewitowicz; L. Gaudefroy; F. Rotaru; A. Krasznahorkay; J. Timár; D. Sohler; J. Mrazek; F. Ibrahim
decay of
Journal of Physics: Conference Series | 2018
F. Boulay; B. Bastin; F. de Oliveira Santos; Thomas Davinson; A. Lemasson; P. Ujic; J. Mrazek; A. M. Sánchez-Benítez; E. Traykov; D. Ramos; L. Achouri; L. Acosta; C. Borcea; M. Ciemala; P. Delahaye; A. Estrade; J. Grinyer; B. Jacquot; O. Kamalou; A. M. Laird; V. Margerin; G. Marquínez-Durán; F. Negoita; M. Rejmund; C. Rodriguez-Tajes; F. Rotaru; C. Schmitt; N. de Séréville; O. Sorlin; M. Stanoiu
^{24}
Physical Review C | 2015
L. Caceres; A. Lepailleur; O. Sorlin; M. Stanoiu; D. Sohler; Zs. Dombrádi; S. K. Bogner; B. A. Brown; H. Hergert; J. D. Holt; A. Schwenk; F. Azaiez; B. Bastin; C. Borcea; R. Borcea; C. Bourgeois; Z. Elekes; Zs. Fülöp; S. Grévy; L. Gaudefroy; G. F. Grinyer; D. Guillemaud-Mueller; F. Ibrahim; A. Kerek; A. Krasznahorkay; M. Lewitowicz; S. M. Lukyanov; J. Mrazek; F. Negoita; F. de Oliveira
O and the in-beam