References quoted in the ENSDF dataset: 162DY 160GD(7LI,P4NG)

3 references found.

Clicking on a keynumber will list datasets that reference the given article.


1998HA66

Nuovo Cim. 111A, 645 (1998)

T.Hartlein, H.Bauer, B.Binder, A.Dietrich, Ch.Gund, D.Pansegrau, D.Schwalm, A.Jungclaus, G.B.Hagemann, G.de Angelis, E.Farnea, A.Gadea, D.R.Napoli, D.Bazzacco, C.Rossi Alvarez, S.Lunardi, C.Ur

New Insights in the First Backbending Region of Heavy Dy Isotopes

NUCLEAR REACTIONS 158,160Gd(7Li, xnp), (7Li, xnd), (7Li, xnt)160Dy/161Dy/162Dy/163Dy, E=56 MeV; measured Eγ, Iγ, γγ-, (charged particle)γ-coin; deduced production σ. 160,162Dy deduced rotational bands interaction strengths, bandcrossing frequencies. Incomplete fusion reaction. GASP array.


2001JU08

Prog.Part.Nucl.Phys. 46, 213 (2001)

A.Jungclaus, B.Binder, A.Dietrich, T.Hartlein, H.Bauer, Ch.Gund, D.Pansegrau, D.Schwalm, D.Bazzacco, G.de Angelis, E.Farnea, A.Gadea, S.Lunardi, D.R.Napoli, C.Rossi-Alvarez, C.Ur, G.B.Hagemann

Investigations of 159-163Dy using Incomplete Fusion Reactions

NUCLEAR REACTIONS 158,160Gd(7Li, X)159Dy/160Dy/161Dy/162Dy/163Dy, E=8 MeV/nucleon; measured Eγ, Iγ, γγ-, (charged particle)γ-coin. 162Dy deduced high-spin levels, J, π. 161Dy deduced rotational band transitions. GASP, ISIS arrays, incomplete fusion reactions.

doi: 10.1016/S0146-6410(01)00126-0


2002JU08

Phys.Rev. C66, 014312 (2002)

A.Jungclaus, B.Binder, A.Dietrich, T.Hartlein, H.Bauer, Ch.Gund, D.Pansegrau, D.Schwalm, J.L.Egido, Y.Sun, D.Bazzacco, G.de Angelis, E.Farnea, A.Gadea, S.Lunardi, D.R.Napoli, C.Rossi-Alvarez, C.Ur, G.B.Hagemann

Backbending Region Study in 160, 162Dy using Incomplete Fusion Reactions

NUCLEAR REACTIONS 160Gd(7Li, X)160Ho/161Ho/162Ho/163Ho/160Dy/161Dy/162Dy/163Dy/164Dy/160Gd, E=35-67 MeV; measured production σ, charged particle angular distributions. 158,160Gd(7Li, X)160Dy/162Dy, E=56 MeV; measured Eγ, Iγ, γγ-, (charged particle)γ-coin. 160,162Dy deduced high-spin levels, J, π, configurations. GASP, ISIS arrays, incomplete fusion, comparison with model predictions.

doi: 10.1103/PhysRevC.66.014312