References quoted in the XUNDL dataset: 162DY 162DY(N,N'G):XUNDL-10

4 references found.

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


2006AP01

Nucl.Phys. A764, 42 (2006)

A.Aprahamian, X.Wu, S.R.Lesher, D.D.Warner, W.Gelletly, H.G.Borner, F.Hoyler, K.Schreckenbach, R.F.Casten, Z.R.Shi, D.Kusnezov, M.Ibrahim, A.O.Macchiavelli, M.A.Brinkman, J.A.Becker

Complete spectroscopy of the 162Dy nucleus

NUCLEAR REACTIONS 161Dy(n, γ), E=0.03-2 MeV; measured Eγ, Iγ, E(ce), I(ce). 160Gd(α, 2n), E=256 MeV; measured Eγ, Iγ, γγ-coin. 162Dy deduced levels, K, J, π, ICC, configurations, collective features. Complete spectroscopy, Ritz combination principle.

doi: 10.1016/j.nuclphysa.2005.09.020


2008KI07

Nucl.Instrum.Methods Phys.Res. A589, 202 (2008)

T.Kibedi, T.W.Burrows, M.B.Trzhaskovskaya, P.M.Davidson, C.W.Nestor, Jr.

Evaluation of theoretical conversion coefficients using BrIcc

COMPILATION Z=5-110; compiled and evaluated ICC data. BrICC database.

doi: 10.1016/j.nima.2008.02.051


2017AP01

Phys.Rev. C 95, 024329 (2017)

A.Aprahamian, S.R.Lesher, C.Casarella, H.G.Borner, M.Jentschel

Lifetime measurements in 162Dy

NUCLEAR REACTIONS Dy(n, γ), E=thermal neutrons from high flux reactor at the ILL-Grenoble; measured Eγ, Iγ, level half-lives by Gamma-Ray-Induced Doppler (GRID) broadening technique. 162Dy; deduced levels, bands, B(E2), B(E1), B(M1), collective quadrupole and octupole vibrational excitations. Comparison with Alaga rule predictions. Systematics of energies and B(E2) values for second 0+ and 2+ states in even-even Z=62-72 and N=84-100 nuclei.

doi: 10.1103/PhysRevC.95.024329


2026AP01

Eur.Phys.J. A 62, 70 (2026)

A.Aprahamian, S.R.Lesher, C.Casarella, K.Lee, B.P.Crider, M.Lowe, M.M.Meier, E.E.Peters, F.M.Prados-Estevez, T.J.Ross, S.W.Yates

Lifetimes of negative parity states in 162Dy

NUCLEAR REACTIONS 162Dy(n, n'), E=1.4-3.1 MeV; measured reaction products, Eγ, Iγ; deduced γ-ray energies and relative intensities, initial and final states J, π, level T1/2 using the Doppler-Shift Attenuation Method (DSAM), B(E1), B(E2), negative parity bands. Comparison of transition rates with Alaga rules, available data. The University of Kentucky Accelerator Laboratory (UKAL).

doi: 10.1140/epja/s10050-026-01806-7