Fast-timing Measurement in 96Pd : Improved Accuracy for the Lifetime of the 4+1 State
Yaneva, A., Jazrawi, S., Das, B., Mikolajczuk, M., Górska, M., Regan, P. H., Cederwall, B., Jolie, J., Benzoni, G., Albers, H. M., Alhomaidhi, S., Arici, T., Banerjee, A., Chishti, M. M. R., Davinson, T., Gerl, J., Hall, O., Hubbard, N., Kojouharov, I., . . . Zimba, G. (2023). Fast-timing Measurement in 96Pd : Improved Accuracy for the Lifetime of the 4+1 State. In M. Matejska-Minda, P. Bednarczyk, & M. Kmiecik (Eds.), Zakopane Conference on Nuclear Physics : Extremes of the Nuclear Landscape : Zakopane, Poland, August 28–September 4, 2022 (16, Article A30). Jagiellonian University. Acta Physica Polonica B : Proceedings Supplement. https://doi.org/10.5506/APhysPolBSupp.16.4-A30
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Acta Physica Polonica B : Proceedings SupplementDate
2023Copyright
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Direct lifetime measurements via γ–γ coincidences using the FATIMA fast-timing LaBr3(Ce) array were performed for the excited states below previously reported isomers. In the N = 50 semi-magic 96Pd nucleus, lifetimes below the I π = 8+ seniority isomer were addressed as a benchmark for further analysis. The results for the I π = 2+ and 4 + states confirm the published values. Increased accuracy for the lifetime value was achieved for the 4 + state.
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Zakopane Conference on Nuclear Physics "Extremes of the Nuclear Landscape" 2022Is part of publication
Zakopane Conference on Nuclear Physics : Extremes of the Nuclear Landscape : Zakopane, Poland, August 28–September 4, 2022ISSN Search the Publication Forum
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The authors would like to thank the staff of the FRS and the GSI accel erator for their excellent support. The results were obtained in the context of FAIR Phase-0 Darmstadt, Germany. This work was supported by the Swedish Research Council under grants Nos. 621-2014-5558 and 2019-04880. Support by the STFC under grants Nos. ST/G000697/1, ST/P005314, and ST/P003982/1; by the UK Department for Business, Energy and Industrial Strategy via the National Measurement Office; by the BMBF under grants Nos. 05P19RDFN1, 05P21RDFN1, and 05P21RDFN9; by the Helmholtz Research Academy Hesse for FAIR (HFHF); by the GSI F&E grant No. KJOLIE1820; and by BMBF grant 05P19PKFNA are also acknowledged. P.H.R. and R.S. acknowledge support from the National Mea surement System program unit of the UK’s Department for BGS. G.H., M.S., and R.L. acknowledge IN2P3-GSI agreements, ADI-IDEX, and CSC UPS grants. L.M.F. acknowledges the Spanish MICINN via project No. RTI 2018-098868-B-100. A.A. acknowledges partial support of the Ministerio de Ciencia e Innovacion grant No. PID2019-104714GB-C21. ...License
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