A fully automated neural network diabatization technique constructs coupled multistate potentials that enable quantum wavepacket simulations of CH2+ photofragmentation, revealing a high cross-section for CH radical formation.
In such environments, the high UV flux will also induce the formation of neutral CH frag- ments by the photodissociation of CH+ 2
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Multistate Coupled Diabatic Neural Network potential for the quantum non-adiabatic Photofragmentation of CH$_2^+$
A fully automated neural network diabatization technique constructs coupled multistate potentials that enable quantum wavepacket simulations of CH2+ photofragmentation, revealing a high cross-section for CH radical formation.