Jahn-Teller Effect in Orthorhombic Manganites: Ab Initio Hamiltonian and Roto-vibrational Spectrum.
Joy DuttaSatyam RaviSoumya MukherjeeAvik Kumar OjhaSatrajit AdhikariPublished in: The journal of physical chemistry. A (2022)
For the first time, using three different electronic structure methodologies, namely, CASSCF, RS2c, and MRCI(SD), we construct ab initio adiabatic potential energy surfaces (APESs) and nonadiabatic coupling term (NACT) of two electronic states ( 5 E g ) of MnO 6 9- unit, where eight such units share one La atom in LaMnO 3 crystal. While fitting those APESs with analytic functions of normal modes ( Q x , Q y ), an empirical scaling factor is introduced considering the mass ratio of eight MnO 6 9- units with and without one La atom to explore the environmental (mass) effect on MnO 6 9- unit. When the roto-vibrational levels of MnO 6 9- Hamiltonian are calculated, peak positions computed from ab initio constructed excited APESs are found to be enough close with the experimental satellite transitions [ J. Exp. Theor. Phys. 2016, 122, 890-901] endorsing our earlier model results [ J. Chem. Phys. 2019, 150, 064703]. In order to explore the electron-nuclear coupling in an alternate way, theoretically "exact" and numerically "accurate" beyond Born-Oppenheimer (BBO) theory based diabatic potential energy surfaces (PESs) of MnO 6 9- are constructed to generate the photoelectron (PE) spectra. The PE spectral band also exhibits good peak by peak correspondence with the higher satellite transitions in the dielectric function spectra of the LaMnO 3 complex.
Keyphrases
- density functional theory
- molecular dynamics
- electron transfer
- wastewater treatment
- human health
- molecular dynamics simulations
- energy transfer
- room temperature
- gestational age
- magnetic resonance imaging
- preterm infants
- high resolution
- risk assessment
- magnetic resonance
- staphylococcus aureus
- escherichia coli
- computed tomography
- pseudomonas aeruginosa
- climate change
- candida albicans