A computational and spectroscopic study of MgCCH (X2Σ+): towards characterizing MgCCH+

2Citations
Citations of this article
2Readers
Mendeley users who have this article in their library.
Get full text

Abstract

New computational and experimental studies have been carried out for the MgCCH radical in its X2Σ+ state. Coupled cluster theory [CCSD(T)], was used in conjunction with post-CCSD(T) and scalar relativistic additive corrections to compute vibrational quartic force fields for MgCCH and its cation. From the quartic force fields, higher-order spectroscopic properties, including rotational constants, were obtained. In tandem, the five lowest energy rotational transitions for MgCCH, N = 1→0 through N = 5→4, were measured for the first time using Fourier transform microwave/millimetre wave methods in the frequency range 9–50 GHz. The radical was created in the Discharge Assisted Laser Ablation Source (DALAS) developed in the Ziurys group. A combined fit of these data with previous millimetre direct absorption measurements have yielded the most accurate rotational constants for MgCCH to date. The computed principle rotational constant lies within −1.51 to +1.65 MHz of the experimental one, validating the computational approach. High-level theory was then applied to produce rovibrational spectroscopic constants for MgCCH+, including a rotational constant of B0 = 5354.5–5359.5 MHz. These new predictions will further the experimental study of MgCCH+, and aid in the low-temperature characterisation of MgCCH in the interstellar medium.

Cite

CITATION STYLE

APA

Burns, J. E., Cheng, Q., Fortenberry, R. C., Sun, M., Zack, L. N., Zaveri, T., … Ziurys, L. M. (2024). A computational and spectroscopic study of MgCCH (X2Σ+): towards characterizing MgCCH+. Molecular Physics, 122(7–8). https://doi.org/10.1080/00268976.2023.2267135

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free