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Cd-98(48)50 : The two-proton-hole spectrum in Sn-100(50)50

Gorska, M (author)
Lipoglavsek, M (author)
Grawe, H (author)
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Nyberg, J (author)
Atac, A (author)
Axelsson, A (author)
Bark, R (author)
Blomqvist, J (author)
Cederkall, J (author)
Cederwall, Bo (author)
deAngelis, G (author)
Fahlander, C (author)
Johnson, A (author)
Leoni, S (author)
Likar, A (author)
Matiuzzi, M (author)
Mitarai, S (author)
Norlin, L O (author)
Palacz, M (author)
Persson, J (author)
Roth, H A (author)
Schubart, R (author)
Seweryniak, D (author)
Shizuma, T (author)
Skeppstedt, O (author)
Sletten, G (author)
Walters, W B (author)
Weiszflog, M (author)
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1997
1997
English.
In: Physical Review Letters. - 0031-9007 .- 1079-7114. ; 79:13, s. 2415-2418
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Excited states in Cd-98, two proton holes from Sn-100, were identified and studied for the first time, using in-beam spectroscopy with highly selective ancillary detectors. The structure of the (pi g(9/2))(-2) two-proton-hole spectrum below a T-1/2 = 0.48(16) mu s isomer is deduced and compared to shell-model predictions. A tentative I-pi = (8(+)) assignment, as suggested by systematics, yields a strongly reduced B(E2,8(+) --> 6(+)) = 0.44((+20)(-10)) W.u., corresponding to an effective proton charge of e(pi) = 0.85((+20)(-10))e, which is at variance with existing theoretical predictions.

Subject headings

NATURVETENSKAP  -- Fysik -- Subatomär fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Subatomic Physics (hsv//eng)

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