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Nuclear structure and chemical effects in internal conversion of the 35 keVM1+E2 transition in125Te

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Zeitschrift für Physik A Atoms and Nuclei

Abstract

The relative conversion line intensities of the 35 keV transition in125Te were measured using the 50 cm π√2 iron-yoke magnetic spectrometer. The transition was proved to be ofM1+(8.7±1.5)×10−4 E2 multipolarity, the magnetic component being affected by the nuclear structure with λ=2.4±1.4. The conversion intensity ratio,0/N 1 , was determined to be 0.115+0.005 for both Ag125 I and Cu125 I sources. It is in accordance with previous measurements for the Zn125mTe and Pb125mTe sources and differs from those for the125mTeO2 and Na2H 125m4 TeO6 ones. The conversion coefficients were calculated for 32 configurations of the valence shell of free tellurium atom and ions and were compared with the experimental results.

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The authors are indebted to Drs. B. Kracík and A. Maštalka for their help in early stages of the experiments.

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Brabec, V., Ryšavý, M., Dragoun, O. et al. Nuclear structure and chemical effects in internal conversion of the 35 keVM1+E2 transition in125Te. Z Physik A 306, 347–351 (1982). https://doi.org/10.1007/BF01432375

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  • DOI: https://doi.org/10.1007/BF01432375

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