NSR Query Results


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NSR database version of May 19, 2024.

Search: Author = K.Dockx

Found 6 matches.

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2024BA08      Appl.Radiat.Isot. 208, 111289 (2024)

S.Bara, E.Jajcisinova, T.E.Cocolios, B.Andel, S.Antalic, A.Camaiani, C.Costache, K.Dockx, G.J.Farooq-Smith, A.Kellerbauer, R.Lica, K.M.Lynch, P.Marini, M.Piersa-Silkowska, S.T.Stegemann, M.Stryjczyk, D.Treasa, P.Van Duppen

Half-life determination of 215At and 221Ra with high-purity radioactive ion beams

RADIOACTIVITY 215At, 221Ra(α) [from U(p, X), E=1.4 GeV]; measured decay products, Eα, Iα; deduced T1/2, α-decay widths and hindrance factors. Comparison with available data. The CRIS and ASET experiments in the course of three different experimental campaigns at ISOLDE, CERN.

doi: 10.1016/j.apradiso.2024.111289
Citations: PlumX Metrics


2023CO11      Appl.Radiat.Isot. 202, 111044 (2023)

S.M.Collins, U.Koster, A.P.Robinson, P.Ivanov, T.E.Cocolios, B.Russell, A.J.Fenwick, C.Bernerd, S.Stegemann, K.Johnston, A.M.Gerami, K.Chrysalidis, H.Mohamud, N.Ramirez, A.Bhaisare, J.Mewburn-Crook, D.M.Cullen, B.Pietras, S.Pells, K.Dockx, N.Stucki, P.H.Regan

Determination of the Terbium-152 half-life from mass-separated samples from CERN-ISOLDE and assessment of the radionuclide purity

RADIOACTIVITY 152Tb(EC), (β+); measured decay products, Eγ, Iγ, Eβ, Iβ; deduced T1/2 by three independent techniques from mass-separated samples. Comparison with available data. Two mass-separated samples from the CERN-ISOLDE facility have been assayed at the National Physical Laboratory.

doi: 10.1016/j.apradiso.2023.111044
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


2023JO10      Sci. Rep. 13, 1347 (2023)

J.D.Johnson, M.Heines, F.Bruchertseifer, E.Chevallay, T.E.Cocolios, K.Dockx, C.Duchemin, S.Heinitz, R.Heinke, S.Hurier, L.Lambert, B.Leenders, H.Skliarova, T.Stora, W.Wojtaczka

Resonant laser ionization and mass separation of 225Ac

ATOMIC MASSES 225Ac; measured frequencies using off-line resonant ionization mass spectrometry (RIMS); deduced activities, operational collection and ionization efficiencies, masses. The Joint Research Centre Karlsruhe (JRC) 229Th generator.

doi: 10.1038/s41598-023-28299-4
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2021DU23      Appl.Radiat.Isot. 178, 109983 (2021)

C.Duchemin, T.E.Cocolios, K.Dockx, G.J.Farooq-Smith, O.Felden, R.Formento-Cavaier, R.Gebel, U.Koster, B.Neumaier, B.Scholten, I.Spahn, S.Spellerberg, M.E.Stamati, S.Stegemann, H.Verhoeven

Production cross-section measurements of proton-induced reactions on natural tantalum in the 0.3 GeV-1.7 GeV energy range

NUCLEAR REACTIONS Ta(p, X)116Te/123I/153Dy/158Er, E=0.3-1.7 GeV; measured reaction products, Eγ, Iγ. 110,111In, 115,118Sb, 116,117,119Te, 123I, 123,127Xe, 127,129Cs, 126,128,131Ba, 132La, 132,133,135,139Ce, 138Pr, 136,139Nd, 145,147Eu, 146,147,149,153Gd, 147,148,149,151,153,155Tb, 152,153,155Dy, 156Ho, 157,158,159,161Er, 163,165,167Tm, 162,169Yb, 167,169Yb, 170,171,172,173Lu, 170,172,173,175,180Hf, 173,174,175,176,177,178,180Ta, 175,177W; deduced cumulative σ and uncertainties. Comparison with available data. COSY synchrotron at Julich.

doi: 10.1016/j.apradiso.2021.109983
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2561.


2021HA32      Phys.Rev. C 104, 024326 (2021)

R.D.Harding, A.N.Andreyev, A.E.Barzakh, J.G.Cubiss, P.Van Duppen, M.Al Monthery, N.A.Althubiti, B.Andel, S.Antalic, T.E.Cocolios, T.Day Goodacre, K.Dockx, G.J.Farooq-Smith, D.V.Fedorov, V.N.Fedosseev, D.A.Fink, L.P.Gaffney, L.Ghys, J.D.Johnson, D.T.Joss, M.Huyse, N.Imai, K.M.Lynch, B.A.Marsh, Y.Martinez Palenzuela, P.L.Molkanov, G.G.O'Neill, R.D.Page, R.E.Rossel, S.Rothe, M.D.Seliverstov, S.Sels, C.Van Beveren, E.Verstraelen

Laser-assisted nuclear decay spectroscopy of 176, 177, 179Au

RADIOACTIVITY 179Au(α), (EC), (β+); 177,177m,176,176mAu, 176,177,179Pt, 173,173m,172,172mIr(α)[179,177,176Au laser ionized and mass-separated beams from U(p, X), E=1.4 GeV, followed by separation of products using Resonance Ionization Laser Ion Source (RILIS) and General Purpose Separator (GPS) at the Windmill decay station of ISOLDE-CERN facility]; measured Eα, Iα, K-x rays, Eγ, Iγ, αγ-coin. 179Pt, 175,173,172Ir, 175Os, 169,168Re; deduced levels, J, π, α-hindrance factors, reduced α-widths, conversion coefficients, multipolarities. 176,176mAu; deduced α-decay branching ratios for the low-spin and high-spin states. 179Au; measured half-life of the decay of the ground state. Systematics of α-reduced widths for 171,173,175,176,177,179Au α decays.

NUCLEAR MOMENTS 176,176mAu; measured in-source laser spectroscopy of hyperfine structure; deduced nuclear magnetic moments, spins and configurations for the high- and low-spin states.

doi: 10.1103/PhysRevC.104.024326
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Data from this article have been entered in the XUNDL database. For more information, click here.


2020VE01      Nucl.Instrum.Methods Phys.Res. B463, 327 (2020)

H.Verhoeven, T.E.Cocolios, K.Dockx, G.J.Farooq-Smith, O.Felden, R.Formento-Cavaier, R.Gebel, U.Koster, B.Neumaier, B.Scholten, I.Spahn, S.Spellerberg, M.E.Stamati, S.Stegemann

Measurement of spallation cross sections for the production of terbium radioisotopes for medical applications from tantalum targets

NUCLEAR REACTIONS Ta(p, X)149Tb, E=0.3-1.7 GeV; measured reaction products, Eβ, Iβ; deduced cumulative σ. Comparison with available data.

doi: 10.1016/j.nimb.2019.04.071
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