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Collective rotational-vibrational transition in the very neutron-deficient nuclei (171,172)-Pt

Cederwall, Bo (author)
KTH,Fysik
Bäck, Torbjörn (author)
KTH,Fysik
Bark, R (author)
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Tormanen, S (author)
Odegard, S (author)
King, L (author)
Simpson, J (author)
Page, D (author)
Amzal, N (author)
Cullen, M (author)
Greenlees, T (author)
Keenan, A (author)
Lemmon, R (author)
Cocks, C (author)
Helariutta, K (author)
Jones, M (author)
Julin, R (author)
Juutinen, S (author)
Kettunen, H (author)
Kankaanpaa, H (author)
Kuusiniemi, P (author)
Leino, M (author)
Muikku, M (author)
Rahkila, P (author)
Savelius, A (author)
Uusitalo, J (author)
Magierski, P (author)
Wyss, Ramon (author)
KTH,Fysik
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 (creator_code:org_t)
AMSTERDAM, NETHERLANDS : ELSEVIER SCIENCE, 1998
1998
English.
In: Physics Letters B. - AMSTERDAM, NETHERLANDS : ELSEVIER SCIENCE. - 0370-2693 .- 1873-2445. ; 443:1-4, s. 69-76
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Excited states have been identified for the first time in very neutron deficient Pt-171.172 nuclei using the recoil-or-decay tagging technique. The ground-state band in Pt-172 has been established up to I-pi = 8+. A similar level sequence, presumably built on the I-pi = 13/2(+) state, is observed for Pt-171. The data are compared with theoretical calculations based on the mean field approach and the random phase approximation and are put into the context of the systematics of platinum isotopes. (C) 1998 Elsevier Science B.V. All rights reserved.

Subject headings

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

Keyword

SHAPE COEXISTENCE
PLATINUM ISOTOPES
MASS NUCLEI
BANDS
ALIGNMENT
STATES
DECAY
Physics
Fysik

Publication and Content Type

ref (subject category)
art (subject category)

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