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NSR database version of May 2, 2024.

Search: Author = J.Schuth

Found 11 matches.

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1999SC21      Chem.Phys.Lett. 303, 453 (1999)

J.Schuth, P.-D.Eversheim, P.Heroz, K.Maier, G.Majer, P.Meyer, E.Roduner

NMR on Protons from a Polarized Cyclotron Beam

NUCLEAR MOMENTS 1H; measure NMR, free induction decay spectra of implanted, polarized protons. Polarized-beam NMR.

doi: 10.1016/S0009-2614(99)00235-3
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1998AL15      Nucl.Phys. A635, 273 (1998)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth

Multipole Mixing Parameters of γ-Transitions between the γ-Vibrational Band and the Ground State Rotational Band of 168Er and F-Spin Violation

RADIOACTIVITY 168Tm(EC) [from 168Er(d, 2n)]; measured Eγ, Iγ, γγ(θ). 168Er deduced interband transitions δ. Data from other nuclei compared.

doi: 10.1016/S0375-9474(98)00150-X
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1997AL04      Z.Phys. A357, 13 (1997)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth

g-Factors of the Ground-State Rotational Bands of 158,160,162Dy Derived from Perturbed γ-γ Directional Correlations following (α, 2n)-Reactions

NUCLEAR REACTIONS 156,158,160Gd(α, 2n), E=27 MeV; measured Eγ, Iγ, γγ-coin, directional correlations. 158,160,162Dy deduced ground state rotational bands g-factors.

doi: 10.1007/s002180050208
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1997AL25      Hyperfine Interactions 110, 313 (1997)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth, H.Grawe

Observation of a Long Relaxation Time of the Hyperfine Field of Dy and Er After Recoil Implantation in Iron and Derivation of g-Factors of Rotational States in 164Er and 164Dy

NUCLEAR REACTIONS 162,164Dy, 164,166Er(58Ni, 58Ni'), E=220 MeV; measured γγ(θ, H) following Coulomb excitation;deduced hfs relaxation time in Fe backing. 164Er, 164Dy deduced g-factors.

doi: 10.1023/A:1012604322747
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1996AL02      Z.Phys. A353, 357 (1996)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth

g-Factor of the 4+1 Rotational State of 160Dy

RADIOACTIVITY 160Tb(β-); measured γγ-coin, γγ(θ), DCO. 160Dy levels deduced g factor ratio, δ(E2/M1).

doi: 10.1007/BF01285146
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1996AL20      Z.Phys. A355, 363 (1996)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth, R.Vianden

g-Factors of Rotational States in 176Hf, 177Hf, and 180Hf

RADIOACTIVITY 180mHf(IT) [from thermal neutron irradiation of enriched HfO2]; measured γγ-coin, γγ(t), directional correlation, γγ(θ, H, t). 180Hf levels deduced g. 176Lu(β-); measured Eγ, Iγ, γγ(θ, H, t), γγ(θ), directional correlations. 176Hf levels deduced g. 177Lu(β-) [from thermal neutron irradiation of 176Lu]; measured γγ(θ, H, t), directional correlations, perturbed, imperturbed sources. 177Hf level deduced g, T1/2.

doi: 10.1007/s002180050124
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1996AL31      Z.Phys. A355, 277 (1996)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth

Observation of a Strong Correlation between g(2+γvib) and g(2+rot) in Strongly deformed nuclei

RADIOACTIVITY 154Eu(β-) [from 153Eu thermal neutron irradiation]; 166mHo(β-) [from 165Ho thermal neutron irradiation]; 168Tm(EC), (β+) [from 168Er(d, 2n)]; measured γγ-directional correlations. 154Gd, 166,168Er deduced γ-vibrational bands δ(E2/M1), B(λ).

doi: 10.1007/s002180050110
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1995AL22      Z.Phys. A353, 17 (1995)

I.Alfter, E.Bodenstedt, W.Knichel, J.Schuth

Precision Measurement of the g-Factor of the 2+ γ-Vibrational State of 160Dy and Test of the F-Spin Purity

RADIOACTIVITY 160Tb(β-); measured γγ(θ, H). 160Dy deduced g factor for (γ-vibrational), rotational levels. Neutron activated single Tb crystal, directional correlations in Dy(Tb) hyperfine field. Bohr-Mottelson, interacting boson models.

doi: 10.1007/BF01297722
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1993AL09      Z.Phys. A345, 273 (1993)

I.Alfter, E.Bodenstedt, B.Hamer, J.van den Hoff, W.Knichel, H.Munning, S.Piel, R.Sajok, J.Schuth

g-Factors of the Ground State Rotational Band of 158Dy

RADIOACTIVITY 158Er(EC), (β+) [from 150Sm(12C, 4n), E=69 MeV]; measured γγ(θ, H). 158Dy levels deduced g factors.

NUCLEAR REACTIONS 156Gd(α, 2n), E=27 MeV; measured γγ(θ, H). 158Dy levels deduced g factors.

doi: 10.1007/BF01280834
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1993AL23      Z.Phys. A347, 1 (1993)

I.Alfter, E.Bodenstedt, B.Hamer, W.Knichel, R.Musseler, R.Sajok, T.Schaefer, J.Schuth, R.Vianden

Core Vibration of 99Tc

RADIOACTIVITY 99Mo(β-); measured γγ(t), directional correlation, γγ(θ, H, t); deduced Tc hyperfine field in Fe. 99Tc levels deduced T1/2, g factor, B(λ), δ. Model comparison.

doi: 10.1007/BF01301270
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1992AL21      Nucl.Instrum.Methods Phys.Res. A321, 506 (1992)

I.Alfter, E.Bodenstedt, B.Hamer, J.van den Hoff, W.Knichel, H.Munning, S.Piel, J.Schuth, R.Sajok

A Twelve Detector Coincidence Spectrometer for On-Line and Off-Line Measurements of Nuclear g-Factors

RADIOACTIVITY 192Ir(EC), (β-); measured γγ(θ, H) in Fe. 158Er(EC), (β+) [from 150Sm(12C, 4n)]; measured γγ(θ). 158Dy, 192Pt levels deduced g. Twelve detector coincidence spectrometer.

NUCLEAR REACTIONS 156Gd(α, 2n), E=27 MeV; measured γγ(θ, H) in-beam. 158Dy levels deduced integral rotations. Twelve detector coincidence spectrometer.

doi: 10.1016/0168-9002(92)90061-8
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