Rotationally resolved spectra of the HNC+ and HCN+ molecular ions have been recorded in the spectral range between 6200 and 6800 \rcm\ using a cryogenic ion trap instrument. The rovibrational transitions were probed using two different action spectroscopy schemes, namely laser-induced reaction (LIR) and leak-out spectroscopy (LOS). Various vibrational bands of HNC+ and HCN+ were measured with high resolution for the first time. For HNC+, the X2Σ+(2000)−(0000) overtone band was recorded using LIR, while LOS was used to probe the X2Π(000)1−(210)0μ combination band and the X2Π(000)1−A2Σ+(1000) vibronic band of HCN+. Spectroscopic constants, band origins and radiative lifetimes for the observed states have been determined. The effective fit for the HCN+ spectra revealed the presence of strong vibrational couplings leading to perturbations of the rovibrational levels of the excited states. The two action spectroscopy schemes are compared and their potential use to explore ion-molecule interactions is discussed.
@article{arxiv.2512.13476,
title = {High Resolution Overtone Spectroscopy of HNC$^+$ and HCN$^+$},
author = {Miguel Jiménez-Redondo and Chiara Schleif and Julianna Palotás and János Sarka and Hayley Bunn and Petr Dohnal and Paola Caselli and Pavol Jusko},
journal= {arXiv preprint arXiv:2512.13476},
year = {2025}
}
Comments
Accepted in Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy