1985
DOI: 10.1051/jphys:01985004603035500
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Analysis of the long range potential of iodine in the B 3Π +ou state

Abstract: 2014 Le potentiel quantique de l'état B 303A0+ou de l'iode, s'étendant depuis le niveau fondamental 03C5 = 0 jusqu'au niveau 03C5 = 80 (soit 99,96 % du puits de potentiel), a été déterminé à l'aide d'une méthode variationnelle (IPA). L'analyse de la branche externe de ce potentiel fait appel au développement multipolaire de l'énergie d'interaction limité au terme C10/R1003BD; l'énergie d'échange Vex(R) et les effets hyperfins étant négligés. Dans la région analysée (entre 7 et 12 Å), l'énergie d'échange Vex(R)… Show more

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Cited by 58 publications
(71 citation statements)
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“…7-9 we show in addition calculated spectra C and D, where the excited-state potentials have been shifted by a small amount to either smaller (spectra C) or larger (spectra D) nuclear distances. For exact values see the caption for (9) (obtained from absorption measurements) is -3.2 x 10-l2 m. If we continue the pure repulsive 3110+u potential curve into the bound region, it turns out that near the dissociation limit the repulsive turning points given by Barrow and Yee (12) as well as those from Gerstenkorn et al (16) differ by about -2.3 x 10-l2 m from the extrapolated repulsive values. To attach the bound potential curve to the repulsive part without discontinuity, we shifted the turning points of the bound part by this amount.…”
Section: Sensitivity To Position Of Excited State Potentialsmentioning
confidence: 94%
See 1 more Smart Citation
“…7-9 we show in addition calculated spectra C and D, where the excited-state potentials have been shifted by a small amount to either smaller (spectra C) or larger (spectra D) nuclear distances. For exact values see the caption for (9) (obtained from absorption measurements) is -3.2 x 10-l2 m. If we continue the pure repulsive 3110+u potential curve into the bound region, it turns out that near the dissociation limit the repulsive turning points given by Barrow and Yee (12) as well as those from Gerstenkorn et al (16) differ by about -2.3 x 10-l2 m from the extrapolated repulsive values. To attach the bound potential curve to the repulsive part without discontinuity, we shifted the turning points of the bound part by this amount.…”
Section: Sensitivity To Position Of Excited State Potentialsmentioning
confidence: 94%
“…In a more re-. , cent analysis Gerstenkorn et al (16) In this paper the repulsive of the potentials are calculated using an exponential function of the form…”
Section: Sensitivity To Position Of Excited State Potentialsmentioning
confidence: 99%
“…The parameters D e and C n are taken from literature [26][27][28], and the same values are taken for all isotopomers. This is justified because this part of the long range extension is far enough from the levels determined by the data that small changes like the atomic isotope shift do not introduce significant changes of the eigenvalues in the central part R I ≤ R ≤ R O of the potential within the present accuracy.…”
Section: Modeling Of the Spectramentioning
confidence: 99%
“…The structure of the iodine B-X spectrum was modeled by Gerstenkorn and Luc [9] with a Dunham parameter approach based on the frequencies of the lines in their atlases. Extensive Fourier-transform laser induced fluorescence spectra were taken and modeled in Dunham based descriptions by Cerny et al [10] for the three isotopomers 127 I 2 , 129 I 2 and 127 I 129 I.…”
Section: Introductionmentioning
confidence: 99%
“…The linear absorption lines of I2 are used as frequency references [14]: for each Mg transition we look for the nearest iodine absorption and record it together with the atomic beam fluorescence vs. the laser frequency. The transitions of concern in this work are schematically shown in fig.…”
Section: -Experimental Set-upmentioning
confidence: 99%