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NSR database version of April 11, 2024.

Search: Author = X.Mougeot

Found 38 matches.

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2023BO15      Appl.Radiat.Isot. 201, 110993 (2023)

C.Bobin, C.Thiam, M.-D.M'Hayham, X.Mougeot

Activity standardization of 60Co and 106Ru/106Rh by means of the TDCR method and the importance of the beta spectrum

doi: 10.1016/j.apradiso.2023.110993
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2023KE01      Phys.Rev. C 107, 015504 (2023)

D.K.Keblbeck, R.Bhandari, N.D.Gamage, M.H.Gamage, K.G.Leach, X.Mougeot, M.Redshaw

Updated evaluation of potential ultralow Q-value β-decay candidates

RADIOACTIVITY 47Ca, 74,77As, 98Tc, 124,127Sb, 131I, 133Xe, 135,136Cs, 140Ba, 140La, 148,151Pm, 154,155,156Eu, 161Tb, 166Dy, 166Er, 171Tm, 182,183Ta, 186,189Re, 188W, 193Os, 199Au(β-); 56Co, 57Ni, 73,74As, 75Se, 77Br, 81Kr, 96,97Tc, 101Rh, 111In, 113Sn, 124I, 129,132Cs, 146Pm, 146,147Eu, 156,157Tb, 159Dy, 167Tm, 169Yb, 169,173,174Lu, 175Hf, 177Ta, 183,184Re, 190Ir, 194,195Hg, 195Au, 200Tl, 205Bi(EC); 48V, 56Ni, 79Kr, 83Sr, 105Ag, 144,146Pm, 145,146,148Eu, 153Tb, 169,171Lu, 188Ir(β+); analyzed and evaluated potential ultraslow Q-values in β-, ϵ and β+ decays. 136Cs, 155,156Eu, 188W(β-); 56Co, 81Kr, 97Tc, 146Pm, 157Tb, 173Lu, 175Hf, 183Re, 195Au(EC); 105Ag, 144,146Pm, 148Eu(β+); deduced most promising candidates for ultralow Q value (1 keV or less) in allowed and first-forbidden β decays. Relevance to neutrino mass determination and as a testing ground for atomic interference effects in the nuclear β-decay process.

doi: 10.1103/PhysRevC.107.015504
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2023MO21      Appl.Radiat.Isot. 201, 111018 (2023)

X.Mougeot

Atomic exchange correction in forbidden unique beta transitions

RADIOACTIVITY 39Ar, 63Ni, 85Kr, 107Pd, 241Pu(β-); calculated β-spectra using the BetaShape code. Comparison with available data.

doi: 10.1016/j.apradiso.2023.111018
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2023PE16      Phys.Rev. C 108, 055501 (2023)

L.Perisse, A.Onillon, X.Mougeot, M.Vivier, T.Lasserre, A.Letourneau, D.Lhuillier, G.Mention

Comprehensive revision of the summation method for the prediction of reactor ν(bar)e fluxes and spectra

doi: 10.1103/PhysRevC.108.055501
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2023QU02      Phys.Rev. C 107, 024313 (2023)

F.G.A.Quarati, G.Bollen, P.Dorenbos, M.Eibach, K.Gulyuz, A.Hamaker, C.Izzo, D.K.Keblbeck, X.Mougeot, D.Puentes, M.Redshaw, R.Ringle, R.Sandler, J.Surbrook, I.Yandow

Measurements and computational analysis of the natural decay of 176Lu

RADIOACTIVITY 176Lu(β-), (EC); measured Eγ, Iγ, X-rays, self-scintillation spectra of Lu-containing crystal, Eβ, Iβ, βγ-coin; shape of the β-spectrum Eβ, experimental shape factor, 176Lu β endpoint energy, branching ratios for the β-decay to 6+ and 8+ of 176Hf, Q-values, upper limit for the EC-decay branch. 176Lu(β-); calculated σpectrum Eβ, logft values. 176Yb(2β-); deduced Q-values. Q-values area based on the measured cyclotron frequencies published in this paper. Spectra measurements performed with lutetium-containing scintillator crystals (LuAG:Pr and LSO:Ce) surrounded by NaI(Tl) and CeBr3 spectrometers.

ATOMIC MASSES 176Lu, 176Hf, 176Yb; measured cyclotron frequencies ratios for combinations of 176Lu, 176Hf and 176Yb ions among themselves; deduced mass excess for 176Lu and 176Hf based on the known values for 176Yb and measured ratios. Comparison to AME2020 and other experimental data. Penning trap mass spectrometry (PTMS) at Low Energy Beam and Ion Trap (LEBIT) facility at the National Superconducting Cyclotron Laboratory (NSCL).

doi: 10.1103/PhysRevC.107.024313
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2023SI12      Nucl.Instrum.Methods Phys.Res. A1053, 168354 (2023)

A.Singh, X.Mougeot, S.Leblond, M.Loidl, B.Sabot, A.Nourreddine

Development of a 4π detection system for the measurement of the shape of β spectra

RADIOACTIVITY 14C(β-), 204Tl(β-), (EC); measured decay products, Eβ, Iβ; deduced β-spectra, Q-values, shape factors. Comparison with AME2020 Q-values.

doi: 10.1016/j.nima.2023.168354
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2023TU02      At.Data Nucl.Data Tables 152, 101584 (2023)

S.Turkat, X.Mougeot, B.Singh, K.Zuber

Systematics of log ft values for β- and EC/β+ transitions

NUCLEAR STRUCTURE A=1-254; analyzed available data; calculated log ft with the BetaShape code; deduced systematics for β transitions.

doi: 10.1016/j.adt.2023.101584
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2022KA42      Phys.Rev. C 106, 045502 (2022)

M.Kanafani, X.Flechard, O.Naviliat-Cuncic, G.D.Chung, S.Leblond, E.Lienard, X.Mougeot, G.Quemener, A.Simancas Di Filippo, J.-C.Thomas

High-precision measurement of the 6He half-life

RADIOACTIVITY 6He(β-)[6He beam from SPIRAL target-ECR ion source system at GANIL]; measured Eβ, Iβ; deduced T1/2. 2 phoswich type detectors consisting of YAlO3 Ce-doped scintillator surrounded by an EJ-204 plastic scintillator. Comparison with previous experimental data.

doi: 10.1103/PhysRevC.106.045502
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2022KO10      Appl.Radiat.Isot. 185, 110237 (2022)

K.Kossert, M.Loidl, X.Mougeot, M.Paulsen, P.Ranitzsch, M.Rodrigues

High precision measurement of the 151Sm beta decay by means of a metallic magnetic calorimeter

RADIOACTIVITY 151Sm(β-); measured decay products, Eβ, Iβ; deduced β-spectrum, Q-value, branching ratio. The EMPIR project PrimA-LTD.

doi: 10.1016/j.apradiso.2022.110237
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2022KO22      Appl.Radiat.Isot. 188, 110362 (2022)

K.Kossert, Y.Amelin, D.Arnold, R.Merle, X.Mougeot, M.Schmiedel, D.Zapata-Garcia

Activity standardization of two enriched 40K solutions for the determination of decay scheme parameters and the half-life

RADIOACTIVITY 40K(β-), (EC); measured decay products, Eβ, Iβ, Eγ, Iγ; deduced γ-ray energy and emission probability, β-ray emission probability, branching ratios, T1/2. Re-evaluation of the half-life and the branching ratio. CIEMAT/NIST efficiency tracing (CNET) technique, triple-to-double coincidence ratio (TDCR) method. Comparison with DDEP and other data.

doi: 10.1016/j.apradiso.2022.110362
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2021KO02      Appl.Radiat.Isot. 168, 109478 (2021)

K.Kossert, X.Mougeot

Improved activity standardization of 90Sr/90Y by means of liquid scintillation counting

RADIOACTIVITY 90Sr, 90Y(β-); measured decay products, Eβ, Iβ; deduced β spectra using CIEMAT/NIST efficiency tracing method. Comparison with theoretical calculations.

doi: 10.1016/j.apradiso.2020.109478
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2020FR07      Phys.Rev.Lett. 125, 032701 (2020)

S.Fretwell, K.G.Leach, C.Bray, G.B.Kim, J.Dilling, A.Lennarz, X.Mougeot, F.Ponce, C.Ruiz, J.Stackhouse, S.Friedrich

Direct Measurement of the 7Be L/K Capture Ratio in Ta-Based Superconducting Tunnel Junctions

RADIOACTIVITY 7Be(EC); measured decay products, phonons; deduced recoil spectra, L/K ratio.

doi: 10.1103/PhysRevLett.125.032701
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2020HA37      Phys.Rev. C 102, 065501 (2020)

S.J.Haselschwardt, J.Kostensalo, X.Mougeot, J.Suhonen

Improved calculations of β decay backgrounds to new physics in liquid xenon detectors

RADIOACTIVITY 85Kr, 212,214Pb(β-); calculated energy spectra for the ground-state to ground-state β decays using nuclear shell-model formalism with NUSHELL@MSU code for the relevant nuclear matrix elements (NMEs), including corrections for the atomic exchange effect. Relevance to the β-decay background in dark matter experiments using liquid xenon (LXe) detectors, such as LUX-ZEPLIN, XENONnT and XENON1T collaborations.

doi: 10.1103/PhysRevC.102.065501
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2019MO35      Appl.Radiat.Isot. 154, 108884 (2019)

X.Mougeot

Towards high-precision calculation of electron capture decays

RADIOACTIVITY 55Fe, 11C, 22Na, 57Ni, 58Co, 65Zn, 133Ba, 130Cs, 81Kr, 84Rb, 122Sb, 126I, 202,204Tl, 138La, 26Al(EC), 11C, 22Na, 57Ni, 58Co, 65Zn, 130Cs, 84Rb, 122Sb, 126I, 26Al(β+); calculated capture probability ratios, capture-to-positron ratios, internal bremsstrahlung spectrum.

doi: 10.1016/j.apradiso.2019.108884
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2019SA36      Phys.Rev. C 100, 014308 (2019)

R.Sandler, G.Bollen, J.Dissanayake, M.Eibach, K.Gulyuz, A.Hamaker, C.Izzo, X.Mougeot, D.Puentes, F.G.A.Quarati, M.Redshaw, R.Ringle, I.Yandow

Direct determination of the 138La β-decay Q value using Penning trap mass spectrometry

ATOMIC MASSES 138La, 138Ce, 138Ba, 136Xe; measured cyclotron frequency ratios, time-of-flight ion cyclotron resonance for 138La using Penning trap mass spectrometry at LEBIT-NSCL-MSU facility; deduced atomic mass excesses. Comparison with AME-2016 evaluation.

RADIOACTIVITY 138La(β-), (EC); 138Ce(2EC); deduced Q values; calculated 138La β-decay curve, experimental shape factor, 138La ϵ decay probability ratios for K, L, and M shells. Comparison with previous measurements.

doi: 10.1103/PhysRevC.100.014308
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2019SI42      Appl.Radiat.Isot. 154, 108897 (2019)

A.Singh, X.Mougeot, B.Sabot, D.Lacour, A.Nourreddine

Beta spectrum measurements using a quasi-4π detection system based on Si detectors

RADIOACTIVITY 36Cl(β-), (EC), 133Ba(EC); measured decay products, Eβ, Iβ; deduced β-spectra. Comparison with PENELOPE simulations.

doi: 10.1016/j.apradiso.2019.108897
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2018HA13      Rev.Mod.Phys. 90, 015008 (2018)

L.Hayen, N.Severijns, K.Bodek, D.Rozpedzik, X.Mougeot

High precision analytical description of the allowed β spectrum shape

NUCLEAR STRUCTURE 14C, 14N, 25Na, 25Mg, 35S, 35Cl, 45Ca, 45Sc, 61Cr, 61Mn, 64Co, 64Ni, 100Nb, 100Mo, 104Nb, 104Mo, 121Sn, 121Sb; calculated weak charge radii. Comparison with available data.

doi: 10.1103/RevModPhys.90.015008
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2018MO04      Appl.Radiat.Isot. 134, 225 (2018)

X.Mougeot

Improved calculations of electron capture transitions for decay data and radionuclide metrology

RADIOACTIVITY 11C, 22Na, 26Al, 55Fe, 65Zn, 81Kr, 84Rb, 122Sb, 126I, 133Ba, 138La, 202,204Tl, 40K(EC); calculated electron capture properties, calculated probability ratios. Comparison with available data.

doi: 10.1016/j.apradiso.2017.07.027
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2016QU01      Appl.Radiat.Isot. 108, 30 (2016); Reprint Appl.Radiat.Isot. 109, 172 (2016)

F.G.A.Quarati, P.Dorenbos, X.Mougeot

Experiments and theory of 138La radioactive decay

RADIOACTIVITY 138La(β-), (EC); measured decay products, Eβ, Iβ; deduced β-spectra and electron capture probabilities for K, L and M, Q-value. Comparison with theoretical calculations.

doi: 10.1016/j.apradiso.2015.11.080
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2016QU03      Appl.Radiat.Isot. 109, 172 (2016)

F.G.A.Quarati, P.Dorenbos, X.Mougeot

Reprint of experiments and theory of 138La radioactive decay

doi: 10.1016/j.apradiso.2016.01.017
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2015BE23      Radiochim.Acta 103, 619 (2015)

M.-M.Be, H.Isnard, P.Cassette, X.Mougeot, V.Lourenco, T.Altzitzoglou, S.Pomme, A.Rozkov, P.Auerbach, J.Sochorova, T.Dziel, R.Dersch, K.Kossert, O.Nahle, M.Krivosik, J.Ometakova, G.Stadelmann, A.Nonell, F.Chartier

Determination of the 151Sm half-life

RADIOACTIVITY 151Sm(β-); measured decay products, Eβ, Iβ; deduced T1/2 and its uncertainties. Comparison with available data.

doi: 10.1515/ract-2015-2393
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2015MO10      Phys.Rev. C 91, 055504 (2015)

X.Mougeot

Reliability of usual assumptions in the calculation of β and ν spectra

COMPILATION 3H, 6He, 10Be, 12B, 11,14C, 12,13N, 18,20F, 22,24Na, 27,31Si, 32P, 34,34m,36,38Cl, 41Ar, 40,42K, 47Ca, 46,49Sc, 56Mn, 59Fe, 56,58,60Co, 63Ni, 66,68,72Ga, 74,76As, 84,86,87Rb, 89,90Sr, 88,90,91Y, 89Zr, 94Nb, 99Mo, 99Tc, 110m,111Ag, 113,115,115mCd, 114In, 122,124Sb, 124,129,130,131I, 134,135,137Cs, 139Ba, 138,140La, 141,144Ce, 142,143,144Pr, 147Nd, 146Pm, 150m,152,152m,154Eu, 166Ho, 170,172Tm, 175Yb, 176mLu, 185,187W, 186,187,188Re, 194Ir, 198,199Au, 204,206,207Tl, 209Pb, 210Bi, 241Pu; compiled experimental shape factors from distinct beta decays, energy range of measurements.

RADIOACTIVITY 3H, 6He, 10Be, 12B, 14C, 20F, 24Na, 31Si, 32P, 36,38Cl, 41Ar, 40,42K, 47Ca, 46,49Sc, 56Mn, 59Fe, 60Co, 63Ni, 72Ga, 74,76As, 84,86,87Rb, 89,90Sr, 90,91Y, 94Nb, 99Mo, 99Tc, 110m,111Ag, 113,115,115mCd, 114In, 122,124Sb, 129,130,131I, 134,135,137Cs, 139Ba, 138,140La, 141,144Ce, 142,143,144Pr, 147Nd, 146Pm, 150m,152,152m,154Eu, 166Ho, 170,172Tm, 175Yb, 176mLu, 185,187W, 186,187,188Re, 194Ir, 198,199Au, 204,206,207Tl, 209Pb, 210Bi, 241Pu(β-); 11C, 12,13N, 18F, 22Na, 27Si, 34,34mCl, 56,58Co, 66,68Ga, 74As, 84Rb, 88Y, 89Zr, 124I(β+); calculated usual and improved beta spectra, shape factors, mean energies, experimental mean energies. Systematic analysis of λk=1 approximation for forbidden unique transitions and ξ approximation for forbidden nonunique transitions. Behren's formalism.

doi: 10.1103/PhysRevC.91.055504
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2014BI12      Nucl.Data Sheets 120, 95 (2014)

C.Bisch, X.Mougeot, M.-M.Be, A.-M.Nourreddine

Development of a System for Measuring the Shape of β Spectra Using a Semiconductor Si Detector

doi: 10.1016/j.nds.2014.07.016
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2014MO20      Nucl.Data Sheets 120, 129 (2014)

X.Mougeot, M.-M.Be, C.Bisch, M.Loidl

Corrections for Exchange and Screening Effects in Low-energy Beta Decays

RADIOACTIVITY 63Ni, 241Pu(β-); analyzed available data.; deduced the atomic exchange and screening effects on β-spectra.

doi: 10.1016/j.nds.2014.07.026
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2014RO08      Appl.Radiat.Isot. 87, 342 (2014)

M.Rodrigues, M.-C.Lepy, P.Cassette, X.Mougeot, M.M.Be

Standardization of xenon-127 and measurement of photon emission intensities

RADIOACTIVITY 127Xe(EC); measured decay products, Eγ, Iγ; deduced γ-ray emission probabilities and their uncertainties, conversion electrons. Comparison with available data.

doi: 10.1016/j.aprsdiso.2013.11.066
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2013AL14      Phys.Rev. C 88, 034301 (2013)

T.Al Kalanee, J.Gibelin, P.Roussel-Chomaz, N.Keeley, D.Beaumel, Y.Blumenfeld, B.Fernandez-Dominguez, C.Force, L.Gaudefroy, A.Gillibert, J.Guillot, H.Iwasaki, S.Krupko, V.Lapoux, W.Mittig, X.Mougeot, L.Nalpas, E.Pollacco, K.Rusek, T.Roger, H.Savajols, N.de Sereville, S.Sidorchuk, D.Suzuki, I.Strojek, N.A.Orr

Structure of unbound neutron-rich 9He studied using single-neutron transfer

NUCLEAR REACTIONS 2H(8He, p), E=15 MeV/nucleon, [secondary 8He beam from C(13C, X), E=75 MeV/nucleon primary reaction]; 2H(16O, p), E=15 MeV/nucleon; measured proton spectra, kinetic energies and angles of recoiling protons, σ(θ) using MUST2 telescopes of Si-CsI detectors at GANIL facility. 9He, 17O; deduced levels from experimental missing mass spectra, J, π, widths, l-transfers, configurations, spectroscopic factors, parity inversion in 9He. DWBA and CCBA analyses of σ(θ) data. Reviewed previous measurements of level structure of 9He using different reactions. 16O(d, p) reaction in inverse kinematics used as a test case.

doi: 10.1103/PhysRevC.88.034301
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2012BR01      Phys.Rev. C 85, 011302 (2012)

S.M.Brown, W.N.Catford, J.S.Thomas, B.Fernandez-Dominguez, N.A.Orr, M.Labiche, M.Rejmund, N.L.Achouri, H.Al Falou, N.I.Ashwood, D.Beaumel, Y.Blumenfeld, B.A.Brown, R.Chapman, M.Chartier, N.Curtis, G.de France, N.de Sereville, F.Delaunay, A.Drouart, C.Force, S.Franchoo, J.Guillot, P.Haigh, F.Hammache, V.Lapoux, R.C.Lemmon, A.Leprince, F.Marechal, X.Mougeot, B.Mouginot, L.Nalpas, A.Navin, N.P.Patterson, B.Pietras, E.C.Pollacco, A.Ramus, J.A.Scarpaci, I.Stefan, G.L.Wilson

Low-lying neutron fp-shell intruder states in 27Ne

NUCLEAR REACTIONS 2H(26Ne, p)27Ne, E=9.8 MeV/nucleon; measured Eγ, Iγ, γ(27Ne)-, d(26Ne)-, p(26Ne)-, p(27Ne)-coin, pγ(θ). 27Ne; deduced levels, J, π, L-transfer spectroscopic factors, negative-parity intruder states. SPIRAL facility at GANIL. Adiabatic distorted-wave approximation (ADWA) analysis of σ(θ) data. Comparison with shell-model calculations, N=20 shell gap. systematics of level energies of 25,27Ne, 29Mg.

doi: 10.1103/PhysRevC.85.011302
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2012MO29      Phys.Lett. B 718, 441 (2012)

X.Mougeot, V.Lapoux, W.Mittig, N.Alamanos, F.Auger, B.Avez, D.Beaumel, Y.Blumenfeld, R.Dayras, A.Drouart, C.Force, L.Gaudefroy, A.Gillibert, J.Guillot, H.Iwasaki, T.Al Kalanee, N.Keeley, L.Nalpas, E.C.Pollacco, T.Roger, P.Roussel-Chomaz, D.Suzuki, K.W.Kemper, T.J.Mertzimekis, A.Pakou, K.Rusek, J.-A.Scarpaci, C.Simenel, I.Strojek, R.Wolski

New excited states in the halo nucleus 6He

NUCLEAR REACTIONS 1H(8He, t)6He, E=15.4 MeV/nucleon; measured reaction products, Et, It; deduced σ(θ), energy levels, J, π, resonances. Comparison with available data.

doi: 10.1016/j.physletb.2012.10.054
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2012MO38      Phys.Rev. A86, 042506 (2012)

X.Mougeot, M.-M.Be, C.Bisch, M.Loidl

Evidence for the exchange effect in the β decay of 241Pu

RADIOACTIVITY 241Pu(β-); analyzed available data; calculated effective nuclear charges, the total exchange factor, an allowed β-spectrum with and without exchange effect.

doi: 10.1103/PhysRevA.86.042506
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2011FE06      Phys.Rev. C 84, 011301 (2011); Pub.Note JOUR PRVCA 84 029902 (2011)

B.Fernandez-Dominguez, J.S.Thomas, W.N.Catford, F.Delaunay, S.M.Brown, N.A.Orr, M.Rejmund, M.Labiche, M.Chartier, N.L.Achouri, H.Al Falou, N.I.Ashwood, D.Beaumel, Y.Blumenfeld, B.A.Brown, R.Chapman, N.Curtis, C.Force, G.de France, S.Franchoo, J.Guillot, P.Haigh, F.Hammache, V.Lapoux, R.C.Lemmon, F.Marechal, A.M.Moro, X.Mougeot, B.Mouginot, L.Nalpas, A.Navin, N.Patterson, B.Pietras, E.C.Pollacco, A.Leprince, A.Ramus, J.A.Scarpaci, N.de Sereville, I.Stephan, O.Sorlin, G.L.Wilson

Emergence of the N = 16 shell gap in 21O

NUCLEAR REACTIONS 2H(20O, p), E=10.5 MeV/nucleon; measured E(p), I(p), Eγ, Iγ, σ(θ), p20O-, p20Oγ-coin. 21O; deduced levels, J, π, L-transfer, spectroscopic factors, configurations. Adiabatic distorted-wave approximation analysis of σ(θ) data. Comparison with shell-model calculations.

doi: 10.1103/PhysRevC.84.011301
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2010LO14      Appl.Radiat.Isot. 68, 1454 (2010)

M.Loidl, M.Rodrigues, B.Censier, S.Kowalski, X.Mougeot, P.Cassette, T.Branger, D.Lacour

First measurement of the beta spectrum of 241Pu with a cryogenic detector

RADIOACTIVITY 241Pu(β-); measured decay products, Eβ, Iβ; deduced β-spectrum shape. Comparison with theoretical calculations.

doi: 10.1016/j.apradiso.2009.11.054
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2009RA32      Int.J.Mod.Phys. E18, 2056 (2009)

A.Ramus, N.L.Achouri, H.Al Falou, N.I.Ashwood, D.Beaumel, Y.Blumenfeld, S.M.Brown, W.N.Catford, R.Chapman, M.Chartier, N.Curtis, F.Delaunay, B.Fernandez-Dominguez, C.Force, G.De France, S.Franchoo, J.Guillot, D.Gupta, P.Haigh, F.Hammache, M.Labiche, V.Lapoux, R.C.Lemmon, F.Marechal, B.Martin, X.Mougeot, B.Mouginot, L.Nalpas, A.Navin, N.A.Orr, N.Patterson, B.Pietras, E.C.Pollacco, A.Le Prince, M.Rejmund, J.A.Scarpaci, N.De Sereville, I.Stefan, O.Sorlin, J.S.Thomas, G.L.Wilson

Study of the 20O(d, t) reaction with the TIARA-MUST2-VAMOS-EXOGAM setup

NUCLEAR REACTIONS 2H(20O, 19O)3H, E=11 MeV/nucleon; measured reaction fragments, Eγ, Iγ; deduced J, π, σ(θ). Comparison with DWBA calculations.

doi: 10.1142/S0218301309014287
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2009SU14      Phys.Rev.Lett. 103, 152503 (2009)

D.Suzuki, H.Iwasaki, D.Beaumel, L.Nalpas, E.Pollacco, M.Assie, H.Baba, Y.Blumenfeld, N.De Sereville, A.Drouart, S.Franchoo, A.Gillibert, J.Guillot, F.Hammache, N.Keeley, V.Lapoux, F.Marechal, S.Michimasa, X.Mougeot, I.Mukha, H.Okamura, H.Otsu, A.Ramus, P.Roussel-Chomaz, H.Sakurai, J.-A.Scarpaci, O.Sorlin, I.Stefan, M.Takechi

Breakdown of the Z=8 Shell Closure in Unbound 12O and its Mirror Symmetry

NUCLEAR REACTIONS 14O(p, t), E=51 MeV/nucleon; measured Et, It; deduced an excited state, σ, breakdown of Z=8 shell closure. Comparison with distorted-wave calculations.

doi: 10.1103/PhysRevLett.103.152503
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1753. Data from this article have been entered in the XUNDL database. For more information, click here.


2007GI08      Nucl.Phys. A787, 423c (2007)

A.Gillibert, N.Alamanos, M.Alvarez, F.Auger, D.Beaumel, E.Becheva, Y.Blumenfeld, R.Dayras, F.Delaunay, A.Drouart, G.de France, L.Giot, B.Jurado, N.Keeley, K.W.Kemper, V.Lapoux, W.Mittig, X.Mougeot, L.Nalpas, A.Obertelli, N.Patronis, A.Pakou, E.C.Pollacco, R.Raabe, P.Roussel-Chomaz, F.Rejmund, M.Rejmund, H.Savajols, J.A.Scarpaci, J.L.Sida, F.Skaza, S.Stepantsov, Ch.Theisen, R.Wolski

Structure of exotic nuclei from direct reactions

NUCLEAR REACTIONS 1H(8He, 8He), (8He, d), (8He, t), E=15.7, 61.3 MeV/nucleon; analyzed σ(θ). Coupled reaction channel calculations, DWBA analysis. 2H(26Ne, p), E=9.7 MeV/nucleon; measured fragment yield, Eγ, Iγ, (particle)γ-coin. 27Ne deduced levels, J, π. Exogam array, Vamos spectrometer.

doi: 10.1016/j.nuclphysa.2006.12.064
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0359.


2007GI17      Eur.Phys.J. Special Topics 150, 161 (2007)

A.Gillibert, A.Obertelli, N.Alamanos, M.Alvarez, F.Auger, R.Dayras, A.Drouart, G.de France, B.Jurado, N.Keeley, V.Lapoux, W.Mittig, X.Mougeot, L.Nalpas, A.Pakou, N.Patronis, E.Pollacco, F.Rejmund, M.Rejmund, P.Roussel-Chomaz, H.Savajols, F.Skaza, Ch.Theisen

Study of N = 16 for Ne isotopes

NUCLEAR REACTIONS 2H(26Ne, p), E=9.7 MeV/nucleon; measured Eγ, Iγ, (particle)γ-coin. 27Ne; deduced levels, cross sections, and spectroscopic factors.

doi: 10.1140/epjst/e2007-00293-5
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1705.


2006DO17      Nucl.Instrum.Methods Phys.Res. A564, 32 (2006)

P.Dolegieviez, A.Gillibert, W.Mittig, X.Mougeot, A.Obertelli, F.de Oliveira, M.Ozille, Ph.Robillard, P.Roussel-Chomaz, H.Savajols

A cryogenic target for direct reaction studies with exotic beams

NUCLEAR REACTIONS 1H(18O, p), E(cm) ≈ 900-6000 keV; measured excitation function. Solid targets.

doi: 10.1016/j.nima.2006.03.027
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2006OB01      Phys.Lett. B 633, 33 (2006)

A.Obertelli, A.Gillibert, N.Alamanos, M.Alvarez, F.Auger, R.Dayras, A.Drouart, G.de France, B.Jurado, N.Keeley, V.Lapoux, W.Mittig, X.Mougeot, L.Nalpas, A.Pakou, N.Patronis, E.C.Pollacco, F.Rejmund, M.Rejmund, P.Roussel-Chomaz, H.Savajols, F.Skaza, Ch.Theisen

Shell gap reduction in neutron-rich N=17 nuclei

NUCLEAR REACTIONS 2H(26Ne, p), E=9.7 MeV/nucleon; measured Eγ, Iγ, (charged-particle)γ-coin, σ(E). 27Ne deduced levels, J, π, spectroscopic factor.

doi: 10.1016/j.physletb.2005.11.033
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1705. Data from this article have been entered in the XUNDL database. For more information, click here.


2006OB05      Phys.Rev.C 74, 064305 (2006)

A.Obertelli, A.Gillibert, N.Alamanos, M.A.G.Alvarez, F.Auger, R.Dayras, A.Drouart, N.Keeley, V.Lapoux, X.Mougeot, L.Nalpas, E.Pollacco, F.Skaza, Ch.Theisen, G.de France, B.Jurado, W.Mittig, F.Rejmund, M.Rejmund, P.Roussel-Chomaz, H.Savajols, A.Pakou, N.Patronis

γ spectroscopy of 25, 27Ne and 26, 27Na

NUCLEAR REACTIONS 2H(26Ne, 26Ne'), (26Ne, 25Ne), (26Ne, 27Ne), (26Ne, 26Na), (26Ne, 27Na), E=9.7 MeV/nucleon; measured Eγ, Iγ, (particle)γ-coin. 25,26,27Ne, 26,27Na deduced levels, J, π. Exogam array, Vamos spectrometer, comparison with previous results and model predictions.

doi: 10.1103/PhysRevC.74.064305
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Data from this article have been entered in the XUNDL database. For more information, click here.


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