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Intermediate state perturbation in low temperature nuclear orientation

Identifieur interne : 000855 ( Main/Exploration ); précédent : 000854; suivant : 000856

Intermediate state perturbation in low temperature nuclear orientation

Auteurs : RBID : ISTEX:10751_1980_Article_BF01026857.pdf

Abstract

This paper deals with the perturbation of low temperature nuclear orientation in an intermediate state by an interaction not axially symmetric around the orientation axis. The directional distribution of the emitted radiation is factorized into initial orientation tensors and perturbation factors known from perturbed angular correlation theory. Low temperature nuclear orientation coefficients have been calculated numerically for111Cd in a polycrystalline sample with axially symmetric electric field gradient. Nuclear orientation experiment on111In in indium host confirms theoretical perturbation predictions and demonstrates the sensitivity of the method on different parameters. Moreover this orientation allows the determination, in magnitude and sign of111In (ground state) nuclear magnetic moment: μ = +5.48(10)μn.

DOI: 10.1007/BF01026857

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Le document en format XML

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<div type="abstract" xml:lang="eng">This paper deals with the perturbation of low temperature nuclear orientation in an intermediate state by an interaction not axially symmetric around the orientation axis. The directional distribution of the emitted radiation is factorized into initial orientation tensors and perturbation factors known from perturbed angular correlation theory. Low temperature nuclear orientation coefficients have been calculated numerically for111Cd in a polycrystalline sample with axially symmetric electric field gradient. Nuclear orientation experiment on111In in indium host confirms theoretical perturbation predictions and demonstrates the sensitivity of the method on different parameters. Moreover this orientation allows the determination, in magnitude and sign of111In (ground state) nuclear magnetic moment: μ = +5.48(10)μn.</div>
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<abstract lang="eng">This paper deals with the perturbation of low temperature nuclear orientation in an intermediate state by an interaction not axially symmetric around the orientation axis. The directional distribution of the emitted radiation is factorized into initial orientation tensors and perturbation factors known from perturbed angular correlation theory. Low temperature nuclear orientation coefficients have been calculated numerically for111Cd in a polycrystalline sample with axially symmetric electric field gradient. Nuclear orientation experiment on111In in indium host confirms theoretical perturbation predictions and demonstrates the sensitivity of the method on different parameters. Moreover this orientation allows the determination, in magnitude and sign of111In (ground state) nuclear magnetic moment: μ = +5.48(10)μn.</abstract>
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