NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = L.Johansson Found 11 matches. 2012BE24 Appl.Radiat.Isot. 70, 1894 (2012) M.-M.Be, P.Cassette, M.C.Lepy, M.-N.Amiot, K.Kossert, O.J.Nahle, O.Ott, C.Wanke, P.Dryak, G.Ratel, M.Sahagia, A.Luca, A.Antohe, L.Johansson, J.Keightley, A.Pearce Standardization, decay data measurements and evaluation of 64Cu RADIOACTIVITY 64Cu(EC), (β-); measured reaction products, Eγ, Iγ; analyzed available data; deduced photon emission probabilities, T1/2, decay scheme. International reference system, results from four laboratories.
doi: 10.1016/j.apradiso.2012.02.056
2009HA05 Appl.Radiat.Isot. 67, 641 (2009) A.Harms, L.Johansson, D.MacMahon Decay correction of 95Nb
doi: 10.1016/j.apradiso.2008.12.002
2004JO03 Appl.Radiat.Isot. 60, 347 (2004) L.C.Johansson, A.V.Harms, J.D.Keightley, A.K.Pearce, D.H.Woods, M.J.Woods Primary standardisation of 204Tl using the efficiency tracing method RADIOACTIVITY 204Tl(EC), (β-); measured βγ-coin. Tracer method for standardization.
doi: 10.1016/j.apradiso.2003.11.040
2003JO04 Nucl.Instrum.Methods Phys.Res. A505, 699 (2003) L.Johansson, T.Altzitzoglou, G.Sibbens, S.Pomme, B.Denecke Standardisation of 238Pu using four methods of measurement RADIOACTIVITY 238Pu(α); measured Eα, Iα. Several activity measurement techniques compared.
doi: 10.1016/S0168-9002(03)00627-2
2003JO05 Nucl.Instrum.Methods Phys.Res. A508, 378 (2003) L.Johansson, T.Altzitzoglou, G.Sibbens, B.Denecke, D.F.G.Reher Six direct methods for standardisation of 152Eu RADIOACTIVITY 152Eu(EC), (β-); measured Eγ, Iγ, βγ-coin. Several methods of source standardisation compared.
doi: 10.1016/S0168-9002(03)01510-9
2002AL02 Appl.Radiat.Isot. 56, 447 (2002) T.Altzitzoglou, B.Denecke, L.Johansson, G.Sibbens Standardisation of 89Sr using Three Different Methods RADIOACTIVITY 89Sr(β-); measured Eγ, Iγ, βγ-coin, T1/2; deduced source standardization. Three methods compared.
doi: 10.1016/S0969-8043(01)00229-9
2002GO28 Nucl.Instrum.Methods Phys.Res. A489, 577 (2002) G.Goeminne, C.Wagemans, J.Wagemans, U.Koster, P.Geltenbort, B.Denecke, L.Johansson, S.Pomme Preparation and Characterisation of an 39Ar Sample and Study of the 39Ar(nth, α)36S Reaction NUCLEAR REACTIONS 39Ar(n, α), E=thermal; measured σ upper limit. Target nuclei produced via proton spallation of titanium. RADIOACTIVITY 39Ar(β-) [from Ti(p, X)]; measured Eβ.
doi: 10.1016/S0168-9002(02)00803-3
2002JO01 Appl.Radiat.Isot. 56, 199 (2002) L.Johansson, G.Sibbens, T.Altzitzoglou, B.Denecke Self-Absorption Correction in Standardisation of 204Tl RADIOACTIVITY 204Tl(β-), (EC); measured βγ-coin; deduced self-absorption correction.
doi: 10.1016/S0969-8043(01)00188-9
1976JO03 Phys.Scr. 14, 260 (1976) L.Johansson, E.Karlsson, L.O.Norlin The g-Factor of the First Excited State in 95Mo RADIOACTIVITY 95Tc; measured γγ(θ, H). 95Mo level deduced g.
doi: 10.1088/0031-8949/14/6/002
1970OR02 Nucl.Phys. A148, 516 (1970) B.Orre, A.Linnfors, F.Falk, J.E.Thun, L.Johansson Perturbations of the Alpha-Gamma Angular Correlation in the Decay of 226Ra RADIOACTIVITY 226Ra; measured αγ(θ, H). 222Rn level deduced g-factor, internal magnetic field, perturbations in different environments.
doi: 10.1016/0375-9474(70)90645-7
1969OR02 UUIP-660 (1969) B.Orre, A.Linnfors, F.Falk, J.E.Thun, L.Johansson Perturbations of the Alpha-Gamma Angular Correlation in the Decay of 226Ra RADIOACTIVITY 226Ra; measured αγ(θ, H) in Ni, Co; deduced internal magnetic fields. 222Rn level deduced g.
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