Disentangling the resonant Auger spectra of ozone: overlapping core-hole states and core-excited state dynamics.
Bruno Nunes Cabral TenorioKlaus Braagaard Mo LlerPiero DeclevaSonia CorianiPublished in: Physical chemistry chemical physics : PCCP (2022)
We investigate the resonant and non-resonant Auger spectra of ozone with a newly implemented multi-reference protocol based on the one-center approximation [Tenorio et al. , J. Chem. Theory Comput. 2022, 18 , 4387-4407]. The results of our calculations are compared to existing experimental data, where we elucidate the resonant Auger spectrum measured at 530.8 and 536.7 eV, that correspond to the 1s O T → π*(2b 1 ) and 1s O T → σ*(7a 1 ) resonances, and at 542.3 eV, which lies near the 1s O C → σ *(7a 1 ) excited state and above the 1s O T -1 ionization threshold. Using molecular dynamics simulations, we demonstrate the relevance of few-femtoseconds nuclear dynamics in the resonant Auger spectrum of ozone following the 1s O T → π*(2b 1 ) core-excitation.
Keyphrases
- molecular dynamics simulations
- energy transfer
- density functional theory
- particulate matter
- hydrogen peroxide
- randomized controlled trial
- molecular docking
- quantum dots
- molecular dynamics
- machine learning
- electronic health record
- mass spectrometry
- air pollution
- nitric oxide
- artificial intelligence
- simultaneous determination