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- W2079059248 abstract "The absorption spectrum of the 18O3 isotopologue of ozone is recorded by CW-Cavity Ring Down Spectroscopy between 7400 and 7920 cm−1. The typical noise equivalent absorption of the recordings is αmin≈1×10−10 cm−1 allowing for the detection of extremely weak vibrational bands located only a few % below the dissociation limit. The absorption spectrum also includes the weak 3A2(000)–X(110) hot vibronic band at 7877.53 cm−1 affected by predissociation broadening. Overall, about 1000 lines were rovibrationnally assigned to six vibrational bands. Their line positions were modelled using effective Hamiltonian models covering three vibrational interacting systems and involving several “dark” states perturbing observed transitions. Line positions could be reproduced with rms deviations on the order of 0.01 cm−1. The dipole transition moment parameters of the six bands were determined from the retrieved line intensities. The obtained set of effective parameters and the experimentally determined energy levels were used to generate a list of 1461 transitions provided as Supplementary materials." @default.
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- W2079059248 date "2015-08-01" @default.
- W2079059248 modified "2023-10-18" @default.
- W2079059248 title "CRDS detection and modelling of vibrational bands of 18O3 approaching the dissociation threshold (7400–7920cm−1)" @default.
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- W2079059248 doi "https://doi.org/10.1016/j.jqsrt.2015.04.001" @default.
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