Octupole correlations in the 114Xe nucleus determined through linear polarization analysis with EUROBALL View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2003

AUTHORS

G. de Angelis , A. Gadea , E. Farnea , A. Dewald , P. Petkov , D. Curien , R. Isocrate , D. R. Napoli , N. Marginean , T. Kluge , A. Fitzler , M. De Poli , R. Menegazzo , S. Kasemann , P. Pavan , V. Pucknell , J. Sampson , J. L. Pedroza , N. Kintz , C. Ring , R. Wyss

ABSTRACT

Octupole correlations have been suggested to be present at low and medium spin in the light Te, I and Xe nuclei. In this mass region the Fermi surface for both protons and neutrons lies between the d5/2 and the h11/2 orbitals. Experimentally octupole correlations have been suggested in the light Xe and Te nuclei based on electric dipole (E1) transitions linking the rotational sequences whose character has been inferred only from branching ratios and angular behaviour. Since the experimental confirmation of the electric character of these dipole transitions is paramount in order to firmly establish the octupole nature of such excitations, we have investigated at EUROBALL the linear polarization of the γ rays deexciting such nuclei. In the present work we report the linear polarization and lifetime results obtained for the 114Xe nucleus. Moreover the observation of two E3 transitions deexciting the 5− and 3− states of the octupole sequence has allowed a quantitative determination of the octupole collectivity. High-spin states in the neutron deficient nucleus 114Xe were populated using the 58Ni + 58Ni reaction at 210 MeV. More... »

PAGES

348-348

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-3-642-55560-2_134

DOI

http://dx.doi.org/10.1007/978-3-642-55560-2_134

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1003002972


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43 medium spins
44 nature
45 neutron deficient nucleus 114Xe
46 neutrons lies
47 nucleus
48 nucleus 114Xe
49 observations
50 octupole collectivity
51 octupole correlations
52 octupole nature
53 octupole sequence
54 orbitals
55 order
56 polarization
57 polarization analysis
58 present work
59 protons
60 quantitative determination
61 ratio
62 rays
63 reaction
64 region
65 results
66 rotational sequences
67 sequence
68 spin
69 state
70 such excitations
71 such nuclei
72 surface
73 transition
74 work
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