2005
DOI: 10.1016/j.jms.2004.10.003
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Hyperfine structure of rotational transitions of 14NF3 in the v4=1 vibrational state

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Cited by 2 publications
(3 citation statements)
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“…For CF 3 C 14 N (v 8 = 1) and 14 NF 3 (v 4 = 1), |χ 22 /eQq| ∼ |q 22 /B| as expected, where the experimental values have been taken from Refs [34]. and[35], respectively. For 14 NSF 3 (v 5 = 1), however, |χ 22 /eQq| ∼ 120 |q 22 /B|; |χ 12 /eQq| ∼ 140 |q 12 /B|; and |χ 42 /eQq| ∼ 50 × 10 3 |f 42 /B|, as can be seen from…”
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confidence: 54%
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“…For CF 3 C 14 N (v 8 = 1) and 14 NF 3 (v 4 = 1), |χ 22 /eQq| ∼ |q 22 /B| as expected, where the experimental values have been taken from Refs [34]. and[35], respectively. For 14 NSF 3 (v 5 = 1), however, |χ 22 /eQq| ∼ 120 |q 22 /B|; |χ 12 /eQq| ∼ 140 |q 12 /B|; and |χ 42 /eQq| ∼ 50 × 10 3 |f 42 /B|, as can be seen from…”
mentioning
confidence: 54%
“…In CF 3 CN for v 8 = 1, the value of χ 22 = −χ t /4 = −4.1 kHz [34]. In NF 3 for v 4 = 1, the value of χ 22 = −4.1 kHz [35], fortuitously the same as in CF 3 CN. In the design phase of the current work, it was assumed that |χ 22 | for 14 NSF 3 would also be a few kHz.…”
Section: Splitting Patterns For the Nitrogen Quadrupole Interactionmentioning
confidence: 79%
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