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A general non-adiabatic quantum instanton approximation
Joseph E Lawrence1, David E Manolopoulos1
1Department of Chemistry, University of Oxford, Physical and Theoretical Chemistry Laboratory, South Parks Road, Oxford OX1 3QZ, United Kingdom.
We developed a new quantum method to calculate reaction rates for systems with two electronic states. The non-adiabatic quantum instanton (NAQI) approximation accurately models complex chemical reactions.
Area of Science:
- Quantum chemistry
- Chemical kinetics
- Theoretical chemistry
Background:
- Calculating reaction rates is crucial for understanding chemical processes.
- Existing methods have limitations for systems with strong electronic coupling.
Purpose of the Study:
- To introduce a general quantum instanton approach for calculating reaction rates.
- To develop the non-adiabatic quantum instanton (NAQI) approximation.
Main Methods:
- The NAQI approximation utilizes a saddle point approximation for the time integral of a reactive flux autocorrelation function.
- It employs a generalized definition of the projection operator onto product states.
- The method is validated against exact rates for one-dimensional scattering problems.
Main Results:
- The NAQI approximation unifies existing theories, reducing to Wolynes theory in the golden rule limit and a projected quantum instanton method in the adiabatic limit.
- Demonstrated accuracy for one-dimensional scattering problems.
Conclusions:
- The NAQI approximation provides a versatile and accurate tool for calculating reaction rates in systems with two electronic states.
- The approach is applicable to a range of complex chemical reactions.
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