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NSR database version of May 20, 2024.

Search: Author = C.Konig

Found 7 matches.

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2023HE18      Phys.Rev.Lett. 131, 253002 (2023)

F.Heisse, M.Door, T.Sailer, P.Filianin, J.Herkenhoff, C.M.Konig, K.Kromer, D.Lange, J.Morgner, A.Rischka, Ch.Schweiger, B.Tu, Y.N.Novikov, S.Eliseev, S.Sturm, K.Blaum

High-Precision Determination of g Factors and Masses of 20Ne9+ and 22Ne9+

ATOMIC MASSES 20,22Ne; measured the cyclotron-frequency ratio; deduced individual bound electron g factors, atomic masses. Comparison with available data. The PENTATRAP and A LPHATRAP experiments are both cryogenic Penning-trap setups located at the Max Planck Institute for Nuclear Physics in Heidelberg.

doi: 10.1103/PhysRevLett.131.253002
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2020RI04      Phys.Rev.Lett. 124, 113001 (2020)

A.Rischka, H.Cakir, M.Door, P.Filianin, Z.Harman, W.J.Huang, P.Indelicato, C.H.Keitel, C.M.Konig, K.Kromer, M.Muller, Y.N.Novikov, R.X.Schussler, C.Schweiger, S.Eliseev, K.Blaum

Mass-Difference Measurements on Heavy Nuclides with an eV/c2 Accuracy in the PENTATRAP Spectrometer

ATOMIC MASSES 126,128,129,131,132,134Xe; measured frequencies; deduced mass differences of five pairs of stable xenon isotopes. The novel cryogenic multi-Penning-trap mass spectrometer PENTATRAP.

doi: 10.1103/PhysRevLett.124.113001
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2019VE09      Eur.Phys.J. C 79, 1026 (2019)

C.Velte, F.Ahrens, A.Barth, K.Blaum, M.Brass, M.Door, H.Dorrer, Ch.E.Dullmann, S.Eliseev, C.Enss, P.Filianin, A.Fleischmann, L.Gastaldo, A.Goeggelmann, T.Day Goodacre, M.W.Haverkort, D.Hengstler, J.Jochum, K.Johnston, M.Keller, S.Kempf, T.Kieck, C.M.Konig, U.Koster, K.Kromer, F.Mantegazzini, B.Marsh, Yu.N.Novikov, F.Piquemal, C.Riccio, D.Richter, A.Rischka, S.Rothe, R.X.Schussler, Ch.Schweiger, T.Stora, M.Wegner, K.Wendt, M.Zampaolo, K.Zuber

High-resolution and low-background 163Ho spectrum: interpretation of the resonance tails

RADIOACTIVITY 163Ho(EC) [from 162Er(n, γ), E thermal]; measured decay products, Eβ, Iβ; deduced energy spectrum, Q-value. Comparison with available data.

doi: 10.1140/epjc/s10052-019-7513-x
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2004SE06      Hyperfine Interactions 155, 77 (2004)

G.Seewald, E.Zech, H.Ratai, R.Schmid, R.Stadler, O.Schramm, C.Konig, B.Hinfurtner, E.Hagn, M.Deicher, R.Eder, D.Forkel-Wirth

Hyperfine Interactions Studies on Y, Zr, Nb, Mo, Rh, In and Xe in Co

NUCLEAR MOMENTS Y, Zr, Nb, Mo, Rh, In, Xe; measured hyperfine interactions in Co crystal, NMR on oriented nuclei.

doi: 10.1023/B:HYPE.0000035166.85806.cc
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1996KO26      Phys.Rev. C54, 1027 (1996)

C.Konig, B.Hinfurtner, E.Hagn, E.Zech, R.Eder

Measurements of Nuclear Magnetic Moments and Electric Quadrupole Moments of Lu Isotopes

RADIOACTIVITY 171,169Lu(EC), (β+); 173,172Lu(EC); 177Lu(β-); 177mLu(IT), (β-) [from 181Ta(p, xnyp)]; measured NMR, oriented nuclei, γ(θ); deduced magnetic hyperfine fields, electric field gradient of LuCo(hcp). 169,171,172,173,177mLu deduced μ, quadrupole moment.

doi: 10.1103/PhysRevC.54.1027
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1993HI10      Nucl.Phys. A562, 205 (1993)

B.Hinfurtner, C.Konig, E.Hagn, E.Zech, R.Eder, D.Forkel, and the ISOLDE Collaboration

Measurements of Spectroscopic Quadrupole Moments of Neutron-Deficient Au Isotopes with Quadrupole-Interaction-Resolved NMR-ON

RADIOACTIVITY 193,195Au(EC) [from Pb(p, xnyp)193,195Hg(decay), mass separation]; measured Iγ(θ, T, H), NMR on oriented nuclei. 186Au deduced ground state quadrupole moment, β2. 193Au deduced ground state μ. 195Au deduced ground state, μ, quadrupole moment. 198,199Au deduced ground state quadrupole moment. Other data input.

doi: 10.1016/0375-9474(93)90196-5
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1991KO25      Nucl.Phys. A534, 344 (1991)

C.Konig, B.Hinfurtner, E.Hagn, E.Zech

Magnetic Moment of the π(5/2)-(1/2)[541] Ground State of 3.6 h 173Ta

RADIOACTIVITY 173Ta [from 175Lu(α, 6n), E=70 MeV]; measured Iγ(θ, T, H), NMR on oriented nuclei. 173Ta deduced ground state g, μ. Recoil implantation into Fe.

doi: 10.1016/0375-9474(91)90503-X
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Note: The following list of authors and aliases matches the search parameter C.Konig: , C.M.KONIG