Fermi's golden rule describes the leading-order behaviour of the reaction rate as a function of the diabatic coupling. Its asymptotic $(\hbar \rightarrow 0)$ limit is the semiclassical golden-rule instanton rate theory, which rigorously approximates nuclear quantum effects, lends itself to efficient numerical computation and gives physical insight into reaction mechanisms. However the golden rule by itself becomes insufficient as the strength of the diabatic coupling increases, so higher-order terms must be additionally considered. In this work we give a first-principles derivation of the next-order term beyond the golden rule, represented as a sum of three components. Two of them lead to new instanton pathways that extend the golden-rule c...
Thermally activated chemical reactions are typically understood in terms of overcoming potential-ene...
A computational theory for determining electron transfer rate constants is formulated based on an in...
We analyze the golden rule limit of the recently proposed isomorphic ring polymer (iso-RP) method. T...
Instanton theory provides a semiclassical approximation for computing quantum tunnelling effects in ...
We take the golden-rule instanton method derived in the previous paper [J. O. Richardson, R. Bauer, ...
We describe a path-integral molecular dynamics implementation of our recently developed g...
This thesis discusses recent progress in the development of path-integral methods for non-adiabatic ...
We present a simple method for the calculation of reaction rates in the Fermi golden-rule limit, whi...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
Instanton rate theory is used to study tunneling events in a wide range of systems including low-tem...
We shall revisit the conventional adiabatic or Markov approximation, showing its intrinsic failure i...
There is currently much interest in the development of improved trajectory-based methods for the sim...
We present a simple interpolation formula for the rate of an electron transfer reaction as a functio...
We shall use this introduction to the Faraday Discussion on quantum effects in complex systems to re...
Reactions involving adsorbates on metallic surfaces and impurities in bulk metals are ubiquitous in ...
Thermally activated chemical reactions are typically understood in terms of overcoming potential-ene...
A computational theory for determining electron transfer rate constants is formulated based on an in...
We analyze the golden rule limit of the recently proposed isomorphic ring polymer (iso-RP) method. T...
Instanton theory provides a semiclassical approximation for computing quantum tunnelling effects in ...
We take the golden-rule instanton method derived in the previous paper [J. O. Richardson, R. Bauer, ...
We describe a path-integral molecular dynamics implementation of our recently developed g...
This thesis discusses recent progress in the development of path-integral methods for non-adiabatic ...
We present a simple method for the calculation of reaction rates in the Fermi golden-rule limit, whi...
Semiclassical instanton theory is used to study the quantum effects of tunnelling and delocalization...
Instanton rate theory is used to study tunneling events in a wide range of systems including low-tem...
We shall revisit the conventional adiabatic or Markov approximation, showing its intrinsic failure i...
There is currently much interest in the development of improved trajectory-based methods for the sim...
We present a simple interpolation formula for the rate of an electron transfer reaction as a functio...
We shall use this introduction to the Faraday Discussion on quantum effects in complex systems to re...
Reactions involving adsorbates on metallic surfaces and impurities in bulk metals are ubiquitous in ...
Thermally activated chemical reactions are typically understood in terms of overcoming potential-ene...
A computational theory for determining electron transfer rate constants is formulated based on an in...
We analyze the golden rule limit of the recently proposed isomorphic ring polymer (iso-RP) method. T...