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Research PaperResearchia:202605.13051

Hyperfine-Resolved Rovibrational and Rotational Spectroscopy of OH$^+$ ($X ^3Σ^-$)

Weslley G. D. P. Silva

Abstract

The OH$^+$ ($X ^3Σ^-$) radical cation has been investigated by combining a 4 K 22-pole ion trap apparatus with high-resolution IR and THz radiation sources. Applying different types of action spectroscopic methods, the fundamental vibrational band in the 3 $μ$m range and the spin manifold of the $N=1 \leftarrow 0$ rotational transition around 1 THz have been extended and refined. Additionally, the spin manifold of the $N=2 \leftarrow 1$ rotational transition, scattered around 2 THz, has been mea...

Submitted: May 13, 2026Subjects: Chemistry; Chemistry

Description / Details

The OH+^+ (X3ΣX ^3Σ^-) radical cation has been investigated by combining a 4 K 22-pole ion trap apparatus with high-resolution IR and THz radiation sources. Applying different types of action spectroscopic methods, the fundamental vibrational band in the 3 μμm range and the spin manifold of the N=10N=1 \leftarrow 0 rotational transition around 1 THz have been extended and refined. Additionally, the spin manifold of the N=21N=2 \leftarrow 1 rotational transition, scattered around 2 THz, has been measured for the first time with microwave accuracy. Although all hyperfine components of the pure rotational transitions are affected by considerable Zeeman splittings, a simulation of their contours allowed us to extract the field-free center frequencies with high accuracy. A global fit combining rovibrational and pure rotational transitions from the literature with those newly obtained in this work was performed, leading to improvements in the spectroscopic constants of OH+^+, particularly those in the ground vibrational state.


Source: arXiv:2605.12102v1 - http://arxiv.org/abs/2605.12102v1 PDF: https://arxiv.org/pdf/2605.12102v1 Original Link: http://arxiv.org/abs/2605.12102v1

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Date:
May 13, 2026
Topic:
Chemistry
Area:
Chemistry
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