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Radiative lifetime and energy of the low-energy isomeric level in $^{229}$Th

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arxiv 1509.09101 v1 pith:E7PGNGPH submitted 2015-09-30 physics.atom-ph nucl-th

classification physics.atom-phnucl-th
keywords energylifetimedataisomericlevellow-energynucleusradiative
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abstract

We estimate the range of the radiative lifetime and energy of the anomalous, low-energy $3/2^+(7.8 \pm 0.5$ eV) state in the $^{229}$Th nucleus. Our phenomenological calculations are based on the available experimental data for the intensities of $M1$ and $E2$ transitions between excited levels of the $^{229}$Th nucleus in the $K^{\pi}[Nn_Z\Lambda]=5/2^+[633]$ and $3/2^+[631]$ rotational bands. We also discuss the influence of certain branching coefficients, which affect the currently accepted measured energy of the isomeric state. From this work, we establish a favored region where the transition lifetime and energy should lie at roughly the 90% confidence level. We also suggest new nuclear physics measurements, which would significantly reduce the ambiguity in the present data.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Theory of internal conversion of the thorium-229 nuclear isomer in solid-state hosts

    physics.atom-ph 2024-11 conditional novelty 7.0 of 10

    The paper derives the internal conversion rate for the thorium-229 nuclear isomer in crystals and shows that it quenches the isomer in about a millisecond whenever the resonance is energetically allowed, compared to t...

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