References quoted in the XUNDL dataset: 13BE 1H(14B,13BE):XUNDL-5

8 references found.

Clicking on a keynumber will list datasets that reference the given article.


1992OS04

Z.Phys. A343, 489 (1992)

A.N.Ostrowski, H.G.Bohlen, A.S.Demyanova, B.Gebauer, R.Kalpakchieva, Ch.Langner, H.Lenske, M.von Lucke-Petsch, W.von Oertzen, A.A.Ogloblin, Y.E.Penionzhkevich, M.Wilpert, Th.Wilpert

Mass Spectroscopy of 13Be

NUCLEAR REACTIONS 13C(14C, 14O), E=337 MeV; measured spectra; deduced Q. 13Be deduced mass excess, possible levels, J, π.


1998BE28

Nucl.Phys. A636, 419 (1998)

A.V.Belozyorov, R.Kalpakchieva, Yu.E.Penionzhkevich, Z.Dlouhy, S.Piskor, J.Vincour, H.G.Bohlen, M.von Lucke-Petsch, A.N.Ostrowski, D.V.Alexandrov, E.Yu.Nikolsky, B.G.Novatsky, D.N.Stepanov

Spectroscopy of 13Be

NUCLEAR REACTIONS 14C(11B, 12N), E=190 MeV; measured excitation energy spectra. 13Be deduced levels, Q-value, mass excess. Magnetic spectrograph.

doi: 10.1016/S0375-9474(98)00217-6


1998GO30

Bull.Rus.Acad.Sci.Phys. 62, 1781 (1998)

M.G.Gornov, Yu.B.Gurov, S.V.Lapushkin, P.V.Morokhov, V.A.Pechkurov, K.Seth, T.Pedlar, J.Wise, D.Zhao

Spectroscopy of 7, 8He, 10Li, and 13Be Nuclei in Stopped π- Meson Absorption Reactions

NUCLEAR REACTIONS 9Be(π-, d), 9Be, 11B, 14C(π-, p), 11B, 14C(π-, 2d), 11B(π-, pt), 10,11B(π-, pd), E at rest; measured missing mass spectra. 7,8He, 10Li, 13Be deduced excited levels, widths.


2007SI24

Nucl.Phys. A791, 267 (2007)

H.Simon, M.Meister, T.Aumann, M.J.G.Borge, L.V.Chulkov, U.Datta Pramanik, Th.W.Elze, H.Emling, C.Forssen, H.Geissel, M.Hellstrom, B.Jonson, J.V.Kratz, R.Kulessa, Y.Leifels, K.Markenroth, G.Munzenberg, F.Nickel, T.Nilsson, G.Nyman, A.Richter, K.Riisager, C.Scheidenberger, G.Schrieder, O.Tengblad, M.V.Zhukov

Systematic investigation of the drip-line nuclei 11Li and 14Be and their unbound subsystems 10Li and 13Be

NUCLEAR REACTIONS C(11Li, nx), E=264 MeV/nucleon; C(14Be, nx), E=287 MeV/nucleon; measured neutron energies and yields, σ as a function of core-neutron energy. 11,10Li, 13Be deduced resonance parameters.

doi: 10.1016/j.nuclphysa.2007.04.021


2010KO17

Phys.Lett. B 690, 245 (2010)

Y.Kondo, T.Nakamura, Y.Satou, T.Matsumoto, N.Aoi, N.Endo, N.Fukuda, T.Gomi, Y.Hashimoto, M.Ishihara, S.Kawai, M.Kitayama, T.Kobayashi, Y.Matsuda, N.Matsui, T.Motobayashi, T.Nakabayashi, T.Okumura, H.J.Ong, T.K.Onishi, K.Ogata, H.Otsu, H.Sakurai, S.Shimoura, M.Shinohara, T.Sugimoto, S.Takeuchi, M.Tamaki, Y.Togano, Y.Yanagisawa

Low-lying intruder state of the unbound nucleus 13Be

NUCLEAR REACTIONS 1H(14Be, X)13Be, E=69 MeV/nucleon; measured reaction fragments; deduced σ, σ(E), p- and d-wave resonance energies and widths, J, π. Comparison with shell model calculations.

doi: 10.1016/j.physletb.2010.05.031


2013AK02

Phys.Rev. C 87, 064316 (2013)

Yu.Aksyutina, T.Aumann, K.Boretzky, M.J.G.Borge, C.Caesar, A.Chatillon, L.V.Chulkov, D.Cortina-Gil, U.Datta Pramanik, H.Emling, H.O.U.Fynbo, H.Geissel, G.Ickert, H.T.Johansson, B.Jonson, R.Kulessa, C.Langer, T.LeBleis, K.Mahata, G.Munzenberg, T.Nilsson, G.Nyman, R.Palit, S.Paschalis, W.Prokopowicz, R.Reifarth, D.Rossi, A.Richter, K.Riisager, G.Schrieder, H.Simon, K.Summerer, O.Tengblad, H.Weick, M.V.Zhukov

Structure of the unbound nucleus 13Be: One-neutron knockout reaction data from 14Be analyzed in a holistic approach

NUCLEAR REACTIONS 1H(14Be, n), [14Be secondary beam from Be(16O, X), E=360 MeV/nucleon primary reaction], E=304 MeV/nucleon; measured particle and neutron spectra, (fragment)n-coin in one-neutron knockout reaction, energy loss, time-of-flight, transverse momentum distributions using ALADIN-LAND system at GSI facility; deduced invariant mass in 12Be+n system, relative intensities of s-, p- and d-components, momentum-profile distribution. 13Be; deduced levels, resonances, J, π, widths, energies of S-matrix poles. 12Be; deduced levels, J, π from neutron decay of resonance in 13Be. 14C(7Li, 8B), E=82 MeV; 14C(π-, p), E=stopped pions; 14C(11B, 12N), E=190 MeV; 13C(14C, 14O), E=337 MeV; 2H(12Be, p), E=72 MeV/nucleon; reviewed resonance energies, J, π, width data for 13Be in missing mass methods. C(14B, n12Be), E=35, 287 MeV/nucleon; 1H(14Be, n12Be), E=68 MeV/nucleon; reviewed and analyzed resonance energies, J, π, width data for 13Be in invariant mass methods. 1H(14Be, n), E=68, 304 MeV/nucleon; analyzed relative energy spectra in 12Be+n system, σ, resonance energies and widths from RIKEN and current (GSI) data. Impulse approximation formalism. Dominance of s-wave component in 12Be+n system.

doi: 10.1103/PhysRevC.87.064316


2014RA07

Phys.Rev. C 89, 034320 (2014)

G.Randisi, A.Leprince, H.Al Falou, N.A.Orr, F.M.Marques, N.L.Achouri, J.-C.Angelique, N.Ashwood, B.Bastin, T.Bloxham, B.A.Brown, W.N.Catford, N.Curtis, F.Delaunay, M.Freer, E.de Goes Brennand, P.Haigh, F.Hanappe, C.Harlin, B.Laurent, J.-L.Lecouey, A.Ninane, N.Patterson, D.Price, L.Stuttge, J.S.Thomas

Structure of 13Be probed via secondary-beam reactions

NUCLEAR REACTIONS 12C(14B, 13Be), (15B, 13Be), [14,15B secondary beams from 9Be(18O, X), E=55 MeV/nucleon primary reaction], E=35 MeV/nucleon; measured reaction products, (12Be)n-, (fragment)γ-coin, Iγ using LISE spectrometer, Si-Si-CsI(TI) telescope, DEMON array at GANIL facility; deduced neutron energy spectrum; reconstructed 12Be+n, 6He+n, 12Be+n+n decay spectra from breakup of 14B and 15B. C(14B, X)9Be/10Be/11Be/12Be; measured (particle)n-coin; deduced yields. 13Be; deduced levels, J, π, resonances, width, relative population strengths. Comparison with shell-model calculations, and with previous experimental results.

doi: 10.1103/PhysRevC.89.034320


2018RI05

Phys.Rev. C 98, 024603 (2018)

G.Ribeiro, for the R3B Collaboration

Structure of 13Be studied in proton knockout from 14B

NUCLEAR REACTIONS 1H(14B, 13Be), E=400 MeV/nucleon, [14B secondary beam produced in 9Be(40Ar, X), E=490 MeV/nucleon using the GSI-FRS facility]; measured reaction products, Eγ, Iγ, (12B)γn-coin, relative-energy spectra of 12Be+n by momentum analysis of 12Be core ejecta using the ALADIN dipole magnet, a double sided silicon-strip detector and the time-of-flight wall, decay neutrons using Large Area Neutron Detector (LAND), and γ rays by the 4π Crystal Ball scintillation detector. 13Be; deduced levels, resonances, J, π, widths by missing-mass and invariant-mass methods. Comparison with previous experimental values.

doi: 10.1103/PhysRevC.98.024603