Elsevier

Nuclear Data Sheets

Volume 13, Issue 2, October 1974, Pages 133-135, 137-139, 141-190
Nuclear Data Sheets

Nuclear data sheets for A = 130

https://doi.org/10.1016/S0090-3752(74)80002-5Get rights and content

Abstract

All information concerning nuclei with A = 130 received prior to January 1974 have been evaluated and compiled. More than 250 papers were studied, and data from over 140 of these are used or cited in this work. This report supersedes the 1961 version of the Nuclear Data Sheets.

The nuclei included range in Z from 49 to 60 and are In, Sn, Sb, Te, I, Xe, Cs, Ba, La, Ce, and Nd. No information on the Z = 59 nucleus Pr has yet been published for mass 130. The most complete information included concerns the (only) three stable, even-even A = 130 nuclei, Te, Xe, and Ba. The least investigated are the levels of the odd-odd nuclei, I, Cs, and La. The correspondence for levels of Te seen in decay work and those resulting from inelastic scattering is in need of further investigation. All level information for Xe is based on γ-ray investigations. Several reaction-gamma studies have been performed but no other reaction data are available for Xe. Reaction studies for Ba are sparse, and reaction-gamma results account for most of the levels known. Possible discrepancies in the Ba data include the BE(2), Q2 measurements for the first 2+ state, and the half-life of the (11-ms) isomer. The β+-decay from La (study in the preliminary stages) is also beginning to provide new level information for Ba. The In → Sn → Sb β-decays have just recently begun to be established by use of mass-separated sources, and the Sb → Te decay is now well explored. The relative positions of the two Sb isomers and transitions between them have yet to be established. βγ-coincidence work is needed to verify Q-measurements for this β-chain, as well as to determine the relative positions of the various isomers. The Ce → La → Ba β+-decay chain is of current interest, and Ce → La decay studies can be undertaken when the La → Ba results are more complete. The more neutron-deficient nuclei, La, Ce, and Nd, may be reached by (HI,xnγ) reactions. Levels for even-even Ce have been obtained from just such studies. The odd-odd nuclei, I and Cs, are not reached by decay, and level information for these nuclei is not yet available from reaction studies.

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  • Cited by (0)

    Nuclear Information Research Associate. Work supported by the National Science Foundation through the National Academy of Sciences — National Research Council, Committee on Nuclear Science

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