Molecules in molecular junctions are subject to current-induced forces that can break chemical bonds, induce reactions, destabilize molecular geometry, and halt the operation of the junction. Theories behind current-driven molecular dynamics simulations rely on a perturbative time-scale separation within the system with subsequent use of nonequilibrium Green's functions (NEGF) to compute conservative, non-conservative, and stochastic forces exerted by electrons on nuclear degrees of freedom. We analyze the effectiveness of this approximation, paying particular attention to the phenomenon of negative viscosities. The perturbative approximation is directly compared to the nonequilibrium Ehrenfest approach. We introduce a novel time-stepping a...
We present an escape rate theory for current-induced chemical reactions. We use Keldysh nonequilibr...
While the vast majority of calculations reported on molecular conductance have been based on the sta...
We present a brief pedagogical review of theoretical Green's function methods applicable to open qua...
Molecule-electrode interfaces in molecular electronic junctions are prone to chemical reactions, str...
We present a theory of molecular motors based on the Ehrenfest dynamics for nuclear coordinates and ...
We present a theory of molecular motors based on the Ehrenfest dynamics for nuclear coordinates and ...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
We present quantum electron transport theory that incorporates dynamical effects of motion of atoms ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
In conventional mixed electron-nuclear molecular dynamics simulations, the molecular systems are alw...
We present a time-dependent method based on the single-particle electron density matrix that allows ...
We report a computationally tractable approach to first-principles investigation of time-dependent c...
Experimental measurements of electron transport properties of molecular junctions are often performe...
http://arxiv.org/PS_cache/arxiv/pdf/1010/1010.2959v2.pdfIt is well known that the viscosity of a hom...
The force exerted by the electrons on the nuclei of a current-carrying molecular junction can be man...
We present an escape rate theory for current-induced chemical reactions. We use Keldysh nonequilibr...
While the vast majority of calculations reported on molecular conductance have been based on the sta...
We present a brief pedagogical review of theoretical Green's function methods applicable to open qua...
Molecule-electrode interfaces in molecular electronic junctions are prone to chemical reactions, str...
We present a theory of molecular motors based on the Ehrenfest dynamics for nuclear coordinates and ...
We present a theory of molecular motors based on the Ehrenfest dynamics for nuclear coordinates and ...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
We present quantum electron transport theory that incorporates dynamical effects of motion of atoms ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
In conventional mixed electron-nuclear molecular dynamics simulations, the molecular systems are alw...
We present a time-dependent method based on the single-particle electron density matrix that allows ...
We report a computationally tractable approach to first-principles investigation of time-dependent c...
Experimental measurements of electron transport properties of molecular junctions are often performe...
http://arxiv.org/PS_cache/arxiv/pdf/1010/1010.2959v2.pdfIt is well known that the viscosity of a hom...
The force exerted by the electrons on the nuclei of a current-carrying molecular junction can be man...
We present an escape rate theory for current-induced chemical reactions. We use Keldysh nonequilibr...
While the vast majority of calculations reported on molecular conductance have been based on the sta...
We present a brief pedagogical review of theoretical Green's function methods applicable to open qua...