A theoretical study is reported of a system of two identical symmetric hydrogen bonds, weakly coupled such that the two mobile protons can move either separately (stepwise) or together (concerted). It is modeled by two equivalent quartic potentials interacting through dipolar and quadrupolar coupling terms. The tunneling Hamiltonian has two imaginary modes (reaction coordinates) and a potential with a single maximum that may turn into a saddle-point of second order and two sets of (inequivalent) minima. Diagonalization is achieved via a modified Jacobi-Davidson algorithm. From this Hamiltonian the mechanism of proton transfer is derived. To find out whether the two protons move stepwise or concerted, a new tool is introduced, based on the d...
We present a model of proton tunnelling across DNA hydrogen bonds, compute the characteristic tunnel...
We address the double hydrogen transfer (DHT) dynamics of the porphycene molecule, a complex paradig...
We present the first accurate quantum dynamics calculations of mode-specific tunneling splittings in...
The dynamics of double-proton transfer reactions is studied on a model of transfer along two identic...
Zero-point and excited level splittings due to double-proton tunneling are calculated for porphycene...
A theoretical model for the intermolecular proton transfer AH+ + B ⇄ A + HB+ between identical molec...
$^{a}$Work supported by NSF.Author Institution: Department of Chemistry, University of PittsburghThe...
Zero-point tunneling splittings are calculated, and the values are compared with the experimentally ...
Proton transfers within the formic acid dimer are studied using various methods. Minimum atomic basi...
The dynamics of a tunneling proton in a symmetric H-bond is described in terms of a simple spin-boso...
11 pages, Revtex, corrected some typos.International audienceWe study the dynamical behaviour of the...
The making and breaking of H-bonds on highly anharmonic potential energy surfaces (PES) in proton an...
The two-dimensional potential energy surface (PES) of the quasi-symmetric OHO fragment suggested ear...
Author Institution: CASA theory of tunneling splitting in hydrogen-bonded systems and hydrogen tunne...
The influence of external ions upon the dynamics of proton transfer between the H2O subunits in (H2O...
We present a model of proton tunnelling across DNA hydrogen bonds, compute the characteristic tunnel...
We address the double hydrogen transfer (DHT) dynamics of the porphycene molecule, a complex paradig...
We present the first accurate quantum dynamics calculations of mode-specific tunneling splittings in...
The dynamics of double-proton transfer reactions is studied on a model of transfer along two identic...
Zero-point and excited level splittings due to double-proton tunneling are calculated for porphycene...
A theoretical model for the intermolecular proton transfer AH+ + B ⇄ A + HB+ between identical molec...
$^{a}$Work supported by NSF.Author Institution: Department of Chemistry, University of PittsburghThe...
Zero-point tunneling splittings are calculated, and the values are compared with the experimentally ...
Proton transfers within the formic acid dimer are studied using various methods. Minimum atomic basi...
The dynamics of a tunneling proton in a symmetric H-bond is described in terms of a simple spin-boso...
11 pages, Revtex, corrected some typos.International audienceWe study the dynamical behaviour of the...
The making and breaking of H-bonds on highly anharmonic potential energy surfaces (PES) in proton an...
The two-dimensional potential energy surface (PES) of the quasi-symmetric OHO fragment suggested ear...
Author Institution: CASA theory of tunneling splitting in hydrogen-bonded systems and hydrogen tunne...
The influence of external ions upon the dynamics of proton transfer between the H2O subunits in (H2O...
We present a model of proton tunnelling across DNA hydrogen bonds, compute the characteristic tunnel...
We address the double hydrogen transfer (DHT) dynamics of the porphycene molecule, a complex paradig...
We present the first accurate quantum dynamics calculations of mode-specific tunneling splittings in...