Quantum optimal control of ozone isomerization
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference46 articles.
1. Determination of the Effective Ground State Potential Energy Function of Ozone from High-Resolution Infrared Spectra
2. Geometry of Ozone and Azide Ion in Ground and Certain Excited States
3. Geometries and energies of the excited states of O3 from ab initio potential energy surfaces
4. Violation of the weak noncrossing rule between totally symmetric closed-shell states in the valence-isoelectronic series O3, S3, SO2, and S2O
5. The vibrational energies of ozone up to the dissociation threshold: Dynamics calculations on an accurate potential energy surface
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1. Classical Optimal Control for Energy Minimization Based On Diffeomorphic Modulation under Observable-Response-Preserving Homotopy;Journal of Chemical Theory and Computation;2018-04-20
2. Searching for an optimal control in the presence of saddles on the quantum-mechanical observable landscape;Physical Review A;2017-06-22
3. Robust control of photoassociation of slow O + H collision;Chemical Physics;2017-02
4. Monotonic convergent quantum optimal control method with exact equality constraints on the optimized control fields;Physical Review A;2016-05-18
5. The role of dissociation channels of excited electronic states in quantum optimal control of ozone isomerization: A three-state dynamical model;Chemical Physics;2016-05
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