English
Related papers

Related papers: Structure of 55Ti from relativistic one-neutron kn…

200 papers

The structure of $^{33}$Si was studied by a one-neutron knockout reaction from a $^{34}$Si beam at 98.5 MeV/u incident on a $^{9}$Be target. The prompt $\gamma$-rays following the de-excitation of $^{33}$Si were detected using the GRETINA…

The single-particle structure of $^{57}$Ni and level structure of $^{56}$Ni were investigated with the \mbox{$^{9}$Be ($^{57} $Ni,$^{56}$Ni+$\gamma$)$\it{X}$} reaction at 73 MeV/nucleon. An inclusive cross section of 41.4(12) mb was…

The one-neutron knockout reaction 9Be(57Cr,56Cr + gamma)X has been measured in inverse kinematics with an intermediate-energy beam. Cross sections to individual states in 56Cr were partially untangled through the detection of the…

The structure of $^{35}$P was studied with a one-proton knockout reaction at88~MeV/u from a $^{36}$S projectile beam at NSCL. The $\gamma$ rays from thedepopulation of excited states in $^{35}$P were detected with GRETINA, whilethe $^{35}$P…

New experimental data obtained from $\gamma$-ray tagged one-neutron and one-proton knockout from $^{55}$Co is presented. A candidate for the sought-after $T=1, T_z = 0, J^{\pi} = 6^+$ state in $^{54}$Co is proposed based on a comparison to…

The low-lying structure of $^{55}$Sc has been investigated using in-beam $\gamma$-ray spectroscopy with the $^{9}$Be($^{56}$Ti,$^{55}$Sc+$\gamma$)$X$ one-proton removal and $^{9}$Be($^{55}$Sc,$^{55}$Sc+$\gamma$)$X$ inelastic-scattering…

We present a high-resolution in-beam $\gamma$-ray spectroscopy study of excited states in the mirror nuclei $^{55}$Co and $^{55}$Ni following one-nucleon knockout from a projectile beam of $^{56}$Ni. The newly determined partial cross…

First experimental evidence of the population of the first 2- state in 16C above the neutron threshold is obtained by neutron knockout from 17C on a hydrogen target. The invariant mass method combined with in-beam gamma-ray detection is…

A measurement of the $^{50}$Ti($d$,$p$)$^{51}$Ti reaction at 16 MeV was performed using a Super Enge Split Pole Spectrograph to measure the magnitude of the $N=32$ subshell gap in Ti. Seven states were observed that had not been observed in…

The structure of $^{33}$Mg was investigated by means of two knockout reactions, one-neutron removal from $^{34}$Mg and one-proton removal from $^{34}$Al. Using comparative analysis of the population of observed excited states in the…

The nuclear magnetic moment of the ground state of $^{55}$Ni ($I^{\pi}=3/2^{-}, T_{1/2}=204$ ms) has been deduced to be $|\mu$^{55}Ni)$|=(0.976 \pm 0.026)$ $\mu_N$ using the $\beta$-NMR technique. Results of a shell model calculation in the…

Excited states of the $N=32$ nucleus $^{54}$Ti have been studied, via both inverse-kinematics proton scattering and one-neutron knockout from $^{55}$Ti by a liquid hydrogen target, using the GRETINA $\gamma$-ray tracking array. Inelastic…

Measurements of the N=28 isotones 42Si, 43P and 44S using one- and two-proton knockout reactions from the radioactive beam nuclei 44S and 46Ar are reported. The knockout reaction cross sections for populating 42Si and 43P and a 184 keV…

The atomic masses of $^{55}$Sc, $^{56,58}$Ti, and $^{56-59}$V have been determined using the high-precision multi-reflection time-of-flight technique. The radioisotopes have been produced at RIKEN's RIBF facility and delivered to the novel…

The low-lying energy levels of proton-rich $^{56}$Cu have been extracted using in-beam $\gamma$-ray spectroscopy with the state-of-the-art $\gamma$-ray tracking array GRETINA in conjunction with the S800 spectrograph at the National…

The single-particle spectral function of 56Ni has been computed within the framework of self-consistent Green's functions theory. The Faddeev random phase approximation method and the G-matrix technique are used to account for the effects…

Nuclear Theory · Physics 2009-08-03 C. Barbieri , M. Hjorth-Jensen

From superconductors to atomic nuclei, strongly-interacting many-body systems are ubiquitous in nature. Measuring the microscopic structure of such systems is a formidable challenge, often met by particle knockout scattering experiments.…

Nuclear Experiment · Physics 2021-06-10 M. Patsyuk , J. Kahlbow , G. Laskaris , M. Duer , V. Lenivenko , E. P. Segarra , T. Atovullaev , G. Johansson , T. Aumann , A. Corsi , O. Hen , M. Kapishin , V. Panin , E. Piasetzky , Kh. Abraamyan , S. Afanasiev , G. Agakishiev , P. Alekseev , E. Atkin , T. Aushev , V. Babkin , V. Balandin , D. Baranov , N. Barbashina , P. Batyuk , S. Bazylev , A. Beck , C. A. Bertulani , D. Blaschke , D. Blau , D. Bogoslovsky , A. Bolozdynya , K. Boretzky , V. Burtsev , M. Buryakov , S. Buzin , A. Chebotov , J. Chen , A. Ciszewski , R. Cruz-Torres , B. Dabrowska , D. Dabrowski A. Dmitriev , A. Dryablov , P. Dulov , D. Egorov , A. Fediunin , I. Filippov , K. Filippov , D. Finogeev , I. Gabdrakhmanov , A. Galavanov , I. Gasparic , O. Gavrischuk , K. Gertsenberger , A. Gillibert , V. Golovatyuk , M. Golubeva , F. Guber , Yu. Ivanova , A. Ivashkin , A. Izvestnyy , S. Kakurin , V. Karjavin , N. Karpushkin , R. Kattabekov , V. Kekelidze , S. Khabarov , Yu. Kiryushin , A. Kisiel , V. Kolesnikov , A. Kolozhvari , Yu. Kopylov , I. Korover , L. Kovachev , A. Kovalenko , Yu. Kovalev , A. Kugler , S. Kuklin , E. Kulish , A. Kuznetsov , E. Ladygin , N. Lashmanov , E. Litvinenko , S. Lobastov , B. Loher , Y. -G. Ma , A. Makankin , A. Maksymchyuk , A. Malakhov , I. Mardor , S. Merts , A. Morozov , S. Morozov , G. Musulmanbekov , R. Nagdasev , D. Nikitin , V. Palchik , D. Peresunko , M. Peryt , O. Petukhov , Yu. Petukhov , S. Piyadin , V. Plotnikov , G. Pokatashkin , Yu. Potrebenikov , O. Rogachevsky , V. Rogov , K. Roslon , D. Rossi , I. Rufanov , P. Rukoyatkin , M. Rumyantsev , D. Sakulin , V. Samsonov , H. Scheit , A. Schmidt , S. Sedykh , I. Selyuzhenkov , P. Senger , S. Sergeev , A. Shchipunov , A. Sheremeteva , M. Shitenkov , V. Shumikhin , A. Shutov , V. Shutov , H. Simon , I. Slepnev , V. Slepnev , I. Slepov , A. Sorin , V. Sosnovtsev , V. Spaskov , T. Starecki , A. Stavinskiy , E. Streletskaya , O. Streltsova , M. Strikhanov , N. Sukhov , D. Suvarieva , J. Tanaka , A. Taranenko , N. Tarasov , O. Tarasov , V. Tarasov , A. Terletsky , O. Teryaev , V. Tcholakov , V. Tikhomirov , A. Timoshenko , N. Topilin , B. Topko , H. Tornqvist , I. Tyapkin , V. Vasendina , A. Vishnevsky , N. Voytishin , V. Wagner , O. Warmusz , I. Yaron , V. Yurevich , N. Zamiatin , Song Zhang , E. Zherebtsova , V. Zhezher , N. Zhigareva , A. Zinchenko , E. Zubarev , M. Zuev

Low-spin states in the odd-odd N=Z nucleus 58Cu were investigated with the 58Ni(p,n gamma)58Cu fusion evaporation reaction at the FN-tandem accelerator in Cologne. Seventeen low spin states below 3.6 MeV and 17 new transitions were…

Excited states in 40Si have been established by detecting gamma-rays coincident with inelastic scattering and nucleon removal reactions on a liquid hydrogen target. The low excitation energy, 986(5) keV, of the 2+[1] state provides evidence…

We develop a fully relativistic distorted wave impulse approximation model for electron- and photon-induced one proton knockout reactions. The relativistic mean field for the bound state and the Pauli reduction for the scattering state are…

Nuclear Theory · Physics 2017-08-23 Andrea Meucci , Carlotta Giusti , Franco Davide Pacati
‹ Prev 1 2 3 10 Next ›