2016
DOI: 10.1016/j.cplett.2016.07.030
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A quantum defect analysis of heavy Rydberg behaviour in the BΣu+1

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Cited by 5 publications
(5 citation statements)
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“…Here, H 12 $ 20 cm À1 . (This value is quite small when compared to the interaction matrix element of the avoided crossing of the B 1 R þ u curve and the B 00 B 1 R þ u curve (H 12 $ 3000 cm À1 ) at lower energy and smaller internuclear separation studied previously [12]). The weak interaction between the four states that meet at the (1s; 3l) dissociation limit can also be gauged by the minimal displacement in quantum defect of the highest vibrational level (v 0 ¼ 59) of the B 00 B 1 R þ u state located just 15 cm À1 below the crossing.…”
Section: Heavy Rydberg Analysismentioning
confidence: 92%
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“…Here, H 12 $ 20 cm À1 . (This value is quite small when compared to the interaction matrix element of the avoided crossing of the B 1 R þ u curve and the B 00 B 1 R þ u curve (H 12 $ 3000 cm À1 ) at lower energy and smaller internuclear separation studied previously [12]). The weak interaction between the four states that meet at the (1s; 3l) dissociation limit can also be gauged by the minimal displacement in quantum defect of the highest vibrational level (v 0 ¼ 59) of the B 00 B 1 R þ u state located just 15 cm À1 below the crossing.…”
Section: Heavy Rydberg Analysismentioning
confidence: 92%
“…Specifically, the model potential consists of the doubly-excited state at short internuclear spacing to form the inner repulsive wall, the B state at mid-range to form the well, and the H + H À ion-pair potential at long-range to form the attractive outer wall. The consecutive vibrational counting does not include the v 0 ¼ 36 level, due to its strong inner-well character [12]. The calculated quantum defects of the above-threshold levels using the vibrational assignments made in this way are listed in Table 1 and are plotted in Fig.…”
Section: Heavy Rydberg Analysismentioning
confidence: 99%
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