Two variants of the recently developed quantum instanton (QI) model for calculating thermal rate constants of chemical reactions are applied to several collinear atom\u2013diatom reactions with various skew angles. The results show that the original QI version of the model is consistently more accurate than the "simplest" quantum instanton version (both being applied here with one "dividing surface") and thus to be preferred. Also, for these examples (as with other earlier applications) the QI results agree well with the correct quantum rates (to within ~20% or better) for all temperatures >200 K, except for situations where dynamical corrections to transition state theory (i.e., "re-crossing" dynamics) are evident. (Since re-crossing effec...
Semiclassical instanton theory is a form of quantum transition-state theory which can be applied to ...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...
A quantum theory of thermal reaction rates is presented which may be viewed as an extension of the r...
A quantum mechanical theory for chemical reaction rates is presented which is modeled after the [sem...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
(SQI) approximation with one dividing surface (DS), referred to here as SQI1. (The SQI approximation...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
A general quantum-mechanical method for computing kinetic isotope effects is presented. The method i...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
Manthe U. Accurate calculations of reaction rates: predictive theory based on a rigorous quantum tra...
The quantum instanton approximation is a type of quantum transition state theory that calculates the...
A simple method to find the instanton trajectories is developed. This method does not employ any app...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
Semiclassical instanton theory is a form of quantum transition-state theory which can be applied to ...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...
A quantum theory of thermal reaction rates is presented which may be viewed as an extension of the r...
A quantum mechanical theory for chemical reaction rates is presented which is modeled after the [sem...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
The calculation of thermal reaction rate constants is a central problem in theoretical chemistry, an...
(SQI) approximation with one dividing surface (DS), referred to here as SQI1. (The SQI approximation...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
A general quantum-mechanical method for computing kinetic isotope effects is presented. The method i...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
Manthe U. Accurate calculations of reaction rates: predictive theory based on a rigorous quantum tra...
The quantum instanton approximation is a type of quantum transition state theory that calculates the...
A simple method to find the instanton trajectories is developed. This method does not employ any app...
We explore the relation between the quantum and semiclassical instanton approximations for the react...
Semiclassical instanton theory is a form of quantum transition-state theory which can be applied to ...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...
We consider three reactions: H+H2→H2+H; Mu+H2→MuH+H; Mu+D2→MuD+D. We calculate accurate quantum mech...