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Vibrational and rotational sequences in Mo-101 and Ru-103,Ru-4 studied via multinucleon transfer reactions

Regan, P H (author)
Wheldon, C (author)
Yamamoto, A D (author)
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Valiente-Dobon, J J (author)
Cline, D (author)
Wu, C Y (author)
Macchiavelli, A O (author)
Xu, F R (author)
Smith, J F (author)
Andgren, Karin (author)
KTH,Fysik
Chakrawarthy, R S (author)
Cromaz, M (author)
Fallon, P (author)
Freeman, S J (author)
Gorgen, A (author)
Hayes, A (author)
Hua, H (author)
Langdown, S D (author)
Lee, I Y (author)
Pearson, C J (author)
Podolyak, Z (author)
Teng, R (author)
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 (creator_code:org_t)
2005
2005
English.
In: Acta Physica Polonica B. - 0587-4254 .- 1509-5770. ; 36:4, s. 1313-1322
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The near-yrast states of Mo-101(42)59 and Ru-103,4(44)59,60 have been studied following their population via heavy-ion multinucleon transfer reactions between a Xe-136 beam and a thin, self-supporting Mo-100 target. The ground state sequence in Ru-104 can be understood as demonstrating a simple evolution from a quasi-vibrational structure at lower spins to statically deformed, quasi-rotational excitation involving the population of a pair of low-Omega h(11/2) neutron orbitals. The effect of the decoupled h(11/2) orbital on this vibration-to-rotational evolution is demonstrated by an extension of the "E-GOS" prescription to include odd-A nuclei. The experimental results are also compared with self-consistent Total Routhian Surface calculations which also highlight the polarising role of the highly aligned neutron h(11/2) orbital in these nuclei.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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