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Collinear laser spectroscopy on108g, 108mIn using an ion source with bunched beam release

Identifieur interne : 000650 ( Main/Exploration ); précédent : 000649; suivant : 000651

Collinear laser spectroscopy on108g, 108mIn using an ion source with bunched beam release

Auteurs : RBID : ISTEX:218_1986_Article_BF01294563.pdf

English descriptors

Abstract

The hyperfine structure and isotope shift of108gIn and108mIn have been investigated by means of collinear fast-beam laser spectroscopy in the resonance line atλ=451 nm. The indium isotopes were prepared at the GSI on-line mass separator following a fusion evaporation reaction. For the first time, a FEBIAD ion source with bunched release of indium was used. Magnetic dipole moments, electric quadrupole moments and isotope shifts were determined. The present results lead us to assign the spinI=2 to the108In (T1/2=40 min) state. Spins and moments are discussed in the framework of thejj-coupling model.

DOI: 10.1007/BF01294563

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<div type="abstract" xml:lang="eng">The hyperfine structure and isotope shift of108gIn and108mIn have been investigated by means of collinear fast-beam laser spectroscopy in the resonance line atλ=451 nm. The indium isotopes were prepared at the GSI on-line mass separator following a fusion evaporation reaction. For the first time, a FEBIAD ion source with bunched release of indium was used. Magnetic dipole moments, electric quadrupole moments and isotope shifts were determined. The present results lead us to assign the spinI=2 to the108In (T1/2=40 min) state. Spins and moments are discussed in the framework of thejj-coupling model.</div>
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<abstract lang="eng">The hyperfine structure and isotope shift of108gIn and108mIn have been investigated by means of collinear fast-beam laser spectroscopy in the resonance line atλ=451 nm. The indium isotopes were prepared at the GSI on-line mass separator following a fusion evaporation reaction. For the first time, a FEBIAD ion source with bunched release of indium was used. Magnetic dipole moments, electric quadrupole moments and isotope shifts were determined. The present results lead us to assign the spinI=2 to the108In (T1/2=40 min) state. Spins and moments are discussed in the framework of thejj-coupling model.</abstract>
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