Complete spectroscopy of the 162Dy nucleus

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

Research output: Contribution to journalArticlepeer-review

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Abstract

States in 162Dy have been populated by (n, γ), (n, e-), and (α, 2n) reactions in order to characterize a complete set of low K bands below 2 MeV. The (n, γ) and (n, e-) measurements were made using high precision curved crystal and β- spectrometers. Gamma-gamma coincidence and DCO measurements were made following the (α, 2n) reaction using an array of Compton-suppressed Ge detectors. Using all these data and employing the Ritz combination principle, a level scheme was developed which represents one of the most complete and extensive spectra of levels available for comparison with nuclear models. The observed positive and negative parity bands are discussed in terms of collective quadrupole and octupole vibrational excitations as well as 2 quasi-particle excitations. © 2005 Elsevier B.V. All rights reserved.
Original languageEnglish
Pages (from-to)42-78
Number of pages37
JournalNuclear Physics A
Volume764
Issue number1-4
DOIs
StatePublished - Jan 9 2006

Keywords

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

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