We describe a path-integral molecular dynamics implementation of our recently developed golden-rule quantum transition-state theory(GR-QTST). The method is applied to compute the reaction rate in various models of electron transfer and benchmarked against the exactresults. We demonstrate that for systems exhibiting two or more transition states, rates computed using Wolynes theory [P. G. Wolynes, J. Chem. Phys. 87, 6559 (1987)] can be overestimated by orders of magnitude, whereas the GR-QTST predictions are numerically accu-rate. This is the case both at low temperature, where nuclear tunneling makes a considerable contribution, and also in the classical limit,where only GR-QTST rigorously tends to the cor...
Nonequilibrium Fermi’s golden rule (NE-FGR) approach is developed to simulate the electronic transit...
First-principles calculations of chemical reaction rate constants have useful applications in a vari...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...
We present a simple method for the calculation of reaction rates in the Fermi golden-rule limit, whi...
This thesis discusses recent progress in the development of path-integral methods for non-adiabatic ...
Thermally activated chemical reactions are typically understood in terms of overcoming potential-ene...
Instanton theory provides a semiclassical approximation for computing quantum tunnelling effects in ...
Fermi's golden rule describes the leading-order behaviour of the reaction rate as a function of the ...
We shall use this introduction to the Faraday Discussion on quantum effects in complex systems to re...
Transition-state theory is one of the most successful theories in chemistry. Not only does it provid...
We present a simple interpolation formula for the rate of an electron transfer reaction as a functio...
Transition state theory (TST) has historically been the most important and widely used theoretical a...
Transition-state theory is one of the most successful theories in chemistry. Not only does it provid...
This Feature Article describes some recent developments and applications of the Semiclassical Transi...
Quantum effects like tunneling, coherence, and zero point energy often play a significant role in ph...
Nonequilibrium Fermi’s golden rule (NE-FGR) approach is developed to simulate the electronic transit...
First-principles calculations of chemical reaction rate constants have useful applications in a vari...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...
We present a simple method for the calculation of reaction rates in the Fermi golden-rule limit, whi...
This thesis discusses recent progress in the development of path-integral methods for non-adiabatic ...
Thermally activated chemical reactions are typically understood in terms of overcoming potential-ene...
Instanton theory provides a semiclassical approximation for computing quantum tunnelling effects in ...
Fermi's golden rule describes the leading-order behaviour of the reaction rate as a function of the ...
We shall use this introduction to the Faraday Discussion on quantum effects in complex systems to re...
Transition-state theory is one of the most successful theories in chemistry. Not only does it provid...
We present a simple interpolation formula for the rate of an electron transfer reaction as a functio...
Transition state theory (TST) has historically been the most important and widely used theoretical a...
Transition-state theory is one of the most successful theories in chemistry. Not only does it provid...
This Feature Article describes some recent developments and applications of the Semiclassical Transi...
Quantum effects like tunneling, coherence, and zero point energy often play a significant role in ph...
Nonequilibrium Fermi’s golden rule (NE-FGR) approach is developed to simulate the electronic transit...
First-principles calculations of chemical reaction rate constants have useful applications in a vari...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...