Scinovex
book

Choosing Your Coursebook

The Journal of Physical Chemistry A · 1995 · Vol. 117(36) · pp. 8915–24

Abstract

In this work, adiabatic potential energy curves, spectroscopic constants, dipole moments, and vibrational levels for numerous electronic states of magnesium hydride molecular ion (MgH(+)) are computed. These properties are determined by the use of an ab initio method involving a nonempirical pseudopotential for the magnesium core (Mg), the core polarization potential (CPP), the l-dependent cutoff functions and the full valence configuration interaction (FCI). The molecular ion is thus treated as a two-electron system. Our calculations on the MgH(+) molecular ion extend previous theoretical works to numerous electronic excited states in the various symmetries. A good agreement with the available theoretical and experimental works is obtained for the spectroscopic constants, the adiabatic potential energy curves, and the dipole moments for the lowest states of MgH(+).

Educational Assessment and PedagogyAdvice (programming)Computer scienceEnglish languageLinguisticsMathematics educationNatural language processingArtificial intelligencePsychologyPhilosophyProgramming language
Citations
1,088
FWCI
0.68
field-weighted impact
References
0
Percentile
74%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.