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NSR database version of May 3, 2024.

Search: Author = W.Moller

Found 5 matches.

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1995BE19      J.Phys.(London) G21, 215 (1995)

S.Beiersdorf, W.Heddrich, K.Kesper, H.Huhnermann, W.Moller, H.Wagner

J-Dependence of Optical Isotope Shifts in Sm II

NUCLEAR MOMENTS 144,150,152,154Sm; measured isotope shifts; deduced spin-dependent field, mass-shift parameters. Collinear laser ion beam spectroscopy.

RADIOACTIVITY 146,147,148Sm(α); measured isotope shifts; deduced spin-dependent field, mass-shift parameters. Collinear laser ion beam spectroscopy.

doi: 10.1088/0954-3899/21/2/008
Citations: PlumX Metrics


1993MO04      Phys.Rev.Lett. 70, 541 (1993)

W.Moller, H.Huhnermann, G.Alkhazov, V.Panteleev

How Accurate are the ' Muonic ' Quadrupole Moments in Eu ( Question )

RADIOACTIVITY 145,146,147Eu(EC), (β+); analyzed hfs data; deduced hyperfine coupling constants. 151,153Eu; analyzed hfs data; deduced hyperfine coupling constants, electric quadrupole moment ratio, deviation from muonic data. Collinear laser ion beam spectroscopy.

doi: 10.1103/PhysRevLett.70.541
Citations: PlumX Metrics


1992AL03      J.Phys.(London) B25, 571 (1992)

G.D.Alkhazov, A.E.Barzakh, H.Huhnermann, K.Kesper, A.Mazumdar, W.Moller, R.Otto, V.N.Pantelejev, A.G.Polyakov, C.Reese, H.Wagner

Hyperfine Structure and Isotope Shift Investigations of 145Pm and 147Pm

NUCLEAR MOMENTS 145,147Pm; measured hfs, isotope shifts; deduced hyperfine constants. 145Pm deduced μ, quadrupole moment. Collinear laser ion-beam spectroscopy.

doi: 10.1088/0953-4075/25/2/023
Citations: PlumX Metrics


1987HU14      Hyperfine Interactions 38, 741 (1987)

H.Huhnermann, W.Heddrich, W.Moller, H.Wagner

Collinear Laser Ion Beam Spectroscopy

NUCLEAR MOMENTS 139La; measured hfs. 151,153Eu; measured hfs. 152,154,156,157Gd; measured isotope shifts. Collinear laser ion beam spectroscopy.

RADIOACTIVITY 155Eu; measured hfs. Collinear laser ion beam spectroscopy.


1980MO03      Nucl.Instrum.Methods 168, 111 (1980)

W.Moller, F.Besenbacher

A Note on the 3He + D Nuclear Reaction Cross Section

NUCLEAR REACTIONS 2H(3He, p), E=200-2150 keV; 2H(d, p), E=120-500 keV; measured σ(E, Ep).

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA1185.


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