Manthe U, Ellerbrock R. S-matrix decomposition, natural reaction channels, and the quantum transition state approach to reactive scattering. JOURNAL OF CHEMICAL PHYSICS. 2016;144(20): 204119.A new approach for the quantum-state resolved analysis of polyatomic reactions is introduced. Based on the singular value decomposition of the S-matrix, energy-dependent natural reaction channels and natural reaction probabilities are defined. It is shown that the natural reaction probabilities are equal to the eigenvalues of the reaction probability operator [U. Manthe and W. H. Miller, J. Chem. Phys. 99, 3411 (1993)]. Consequently, the natural reaction channels can be interpreted as uniquely defined pathways through the transition state of the reactio...
Schiffel G, Manthe U. A transition state view on reactive scattering: Initial state-selected reactio...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
This work is concerned with the calculation of state-to-state S-matrix elements for four-atom reacti...
Quantum mechanical methods are developed to describe the dynamics of bimolecular chemical reactions....
Welsch R, Huarte-Larranaga F, Manthe U. State-to-state reaction probabilities within the quantum tra...
Zhao B, Manthe U. Counter-propagating wave packets in the quantum transition state approach to react...
Rigorous quantum dynamics calculations of reaction rates and initial state-selected reaction probabi...
Manthe U, Welsch R. Correlation functions for fully or partially state-resolved reactive scattering ...
The reduced‐dimensionality procedures have particular advantages in applications to chemical reactio...
A quantum dynamical S matrix formalism which enables population distributions to be computed as a fu...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
Welsch R, Manthe U. Thermal flux based analysis of state-to-state reaction probabilities. Molecular ...
The time-dependent quantum wavepacket approach has proven to be a powerful computational approach fo...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Schiffel G, Manthe U. A transition state view on reactive scattering: Initial state-selected reactio...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
Cumulative reaction probability plays a central role in the calculation of reaction rate...
This work is concerned with the calculation of state-to-state S-matrix elements for four-atom reacti...
Quantum mechanical methods are developed to describe the dynamics of bimolecular chemical reactions....
Welsch R, Huarte-Larranaga F, Manthe U. State-to-state reaction probabilities within the quantum tra...
Zhao B, Manthe U. Counter-propagating wave packets in the quantum transition state approach to react...
Rigorous quantum dynamics calculations of reaction rates and initial state-selected reaction probabi...
Manthe U, Welsch R. Correlation functions for fully or partially state-resolved reactive scattering ...
The reduced‐dimensionality procedures have particular advantages in applications to chemical reactio...
A quantum dynamical S matrix formalism which enables population distributions to be computed as a fu...
A new approach is described to the evaluation of the S-matrix in three-dimensional atom-diatom react...
Welsch R, Manthe U. Thermal flux based analysis of state-to-state reaction probabilities. Molecular ...
The time-dependent quantum wavepacket approach has proven to be a powerful computational approach fo...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Schiffel G, Manthe U. A transition state view on reactive scattering: Initial state-selected reactio...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
Cumulative reaction probability plays a central role in the calculation of reaction rate...