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ExoMol line lists – LX. Molecular line list for the ammonia isotopologue 15NH3

Title: ExoMol line lists – LX. Molecular line list for the ammonia isotopologue 15NH3
Authors: Yurchenko, SN; Bowesman, CA; Brady, RP; Guest, ER; Kefala, K; Mitev, GB; Owens, A; Perri, AN; Pezzella, M; Smola, O; Sokolov, A; Zhang, J; Tennyson, J
Source: Monthly Notices of the Royal Astronomical Society , 533 (3) pp. 3442-3456. (2024)
Publisher Information: Oxford University Press (OUP)
Publication Year: 2024
Collection: University College London: UCL Discovery
Description: A theoretical line list for15NH3 CoYuTe-15 is presented based on the empirical potential energy and ab initio dipole moments surfaces developed and used for the production of the ExoMol line list CoYuTe for14NH3. The ro-vibrational energy levels and wavefunctions are computed using the variational program TROVE. The line list ranges up to 10 000 cm−1 (λ ≥ 1 μm) and contains 929 795 249 transitions between 1 269 961 states with J ≤ 30. The line list should be applicable for temperatures up to ∼1000 K. To improve the accuracy of the line positions, a set of experimentally derived energy levels of15NH3 is produced using the MARVEL (Measured Active Rotation Vibration Energy Level) procedure. To this end, 37 experimental sources of the line positions of15NH3 available in the literature are collected, combined, and systematized to produce a self-consistent spectroscopic network of 21 09515NH3 transitions covering 40 vibrational bands ranging up to 6818 cm−1 and resulting in 2777 energy term values. These MARVEL energies are then used to replace the theoretical values in the CoYuTe-15 line list and also complemented by pseudo-MARVEL energies obtained by an isotopologue extrapolation using the previously reported MARVEL energies of the14NH3 parent isotopologue of ammonia. A list of 53 856 high-resolution transitions between MARVEL states and theoretical intensities is provided in the HITRAN format. Comparison with the recent experimental spectra of15NH3 illustrate the potential of the line list for detections and as an efficient assistant in spectroscopic assignments. The line list is available from www.exomol.com.
Document Type: article in journal/newspaper
File Description: text
Language: English
Relation: https://discovery.ucl.ac.uk/id/eprint/10197198/7/Yurchenko_stae1849.pdf; https://discovery.ucl.ac.uk/id/eprint/10197198/
Availability: https://discovery.ucl.ac.uk/id/eprint/10197198/7/Yurchenko_stae1849.pdf; https://discovery.ucl.ac.uk/id/eprint/10197198/
Rights: open
Accession Number: edsbas.DB9D678A
Database: BASE