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NSR database version of May 20, 2024.

Search: Author = D.Schroeer

Found 5 matches.

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1976SA13      Phys.Rev. B13, 4784 (1976)

T.R.Sandin, D.Schroeer, C.D.Spencer

Mossbauer Effect for 57Fe and 57Co in TiO2 (Rutile)

NUCLEAR REACTIONS 57Fe(γ, γ); measured Mossbauer effect. 57Fe deduced isomer shift, quadrupole splitting.

doi: 10.1103/PhysRevB.13.4784
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1973SY01      Phys.Rev. C7, 2056 (1973)

S.C.Sylvester, D.Schroeer

Mossbauer Effect Following Coulomb Excitation of the 43.8-keV State of 161Dy

NUCLEAR REACTIONS 161Dy(α, α'), E=3.3 MeV; measured Mossbauer effect. 161Dy level deduced μ, quadrupole moment, isomer shift.

doi: 10.1103/PhysRevC.7.2056
Citations: PlumX Metrics


1972LA39      Phys.Lett. 41A, 435 (1972)

R.L.Lambe, D.Schroeer

Coulomb-Excitation Mossbauer Effect in the 21.6 keV State of 151Eu

NUCLEAR REACTIONS 151Eu(γ, γ), E=21.6 keV; measured Mossbauer effect; deduced isomer shift.

doi: 10.1016/0375-9601(72)90393-3
Citations: PlumX Metrics


1969SY03      Solid State Commun. 7, 673 (1969)

S.Sylvester, J.E.McQueen, D.Schroeer

Coulomb Excitation Mossbauer Effect of the 43.8-keV State of 161Dy

NUCLEAR REACTIONS 161Dy(γ, γ), E=43.8 keV; measured Mossbauer effect. Coulomb excitation.

doi: 10.1016/0038-1098(69)90590-0
Citations: PlumX Metrics


1968SC04      Phys.Rev. 166, 1212 (1968)

D.Schroeer, P.S.Jastram

Decay Scheme of 158Tb

NUCLEAR STRUCTURE 158Tb; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.166.1212
Citations: PlumX Metrics


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