Gyromagnetic ratio of the 2+ rotational state of184W and observation of a large hyperfine anomaly with respect to183Wg in iron View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

1984-02

AUTHORS

A. Alzner, D. Best, E. Bodenstedt, B. Gemünden, T. Merzhäuser, H. Reif, R. Trzcinski, R. Vianden, U. Wrede

ABSTRACT

Theg-factor of the 2+ rotational state of184W was redetermined by an IPAC measurement in an external magnetic field of 9.45 (5)T as: In the evaluation the remeasured half-life of the 2+ state: was used. TDPAC-measurements with a sample of carrierfree184Re in high purity iron gave the hyperfine fields: and A comparison with the hyperfine field known from a spin echo experiment with183WgFe leads to the hyperfine anomaly: The hyperfine splitting observed in a Mössbauer source experiment with another sample of carrierfree184mRe in high purity iron indicates that the smaller splitting, measured previously by a Mössbauer absorber experiment is due to the high tungsten concentration in the absorber. The new value for theg-factor of the 2+ state together with the result of the Mössbauer experiment allow an improved calibration for our recent investigation of thegR-factors of the 4+ and 6+ rotational states. The recalculated values are: and The remeasured 792-111 keVγ-γ angular correlation gives for the mixing ratio of theK-forbidden 792keV transition: A detailed investigation of the attenuation ofγ-γ angular correlations in liquid sources of184Re and184mRe revealed the reason for erroneous results of early measurements of the 2+gR-factor: The time dependence of the perturbation is not of a simple exponential type. It contains an unresolved strong fast component. More... »

PAGES

87-96

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/bf01415665

DOI

http://dx.doi.org/10.1007/bf01415665

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1052765563


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