The force exerted by the electrons on the nuclei of a current-carrying molecular junction can be manipulated to engineer nanoscale mechanical systems. In the adiabatic regime a peculiarity of these forces is negative friction, responsible for Van der Pol oscillations of the nuclear coordinates. In this work we study the robustness of the Van der Pol oscillations against high-frequency sources. For this purpose we go beyond the adiabatic approximation and perform full Ehrenfest dynamics simulations. The numerical scheme implements a mixed quantum-classical algorithm for open systems and is capable to deal with arbitrary time-dependent driving fields. We find that the Van der Pol oscillations are extremely stable. The nonadiabatic electron dy...
Performing molecular dynamics in electronically excited states requires the inclusion of nonadiabati...
We propose a very accurate computational scheme for the dynamics of a classical oscillator coupled t...
Many chemical processes involve nuclear dynamics on multiple potential energy surfaces. These often ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
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 ...
In our recent paper [Mosallanejad et al., Phys. Rev. B 107(18), 184314, 2023], we have derived a Flo...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
Molecules in molecular junctions are subject to current-induced forces that can break chemical bonds...
Due to their very nature, ultrafast phenomena are often accompanied by the occurrence of nonadiabati...
We investigate time-dependent electron transport through a molecular junction in the adiabatic limit...
Long metallic nanowires combine crucial factors for nonconservative current-driven atomic motion. Th...
Classical dynamical systems close to a critical point are known to act as efficient sensors due to a...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Performing molecular dynamics in electronically excited states requires the inclusion of nonadiabati...
We propose a very accurate computational scheme for the dynamics of a classical oscillator coupled t...
Many chemical processes involve nuclear dynamics on multiple potential energy surfaces. These often ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
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 ...
In our recent paper [Mosallanejad et al., Phys. Rev. B 107(18), 184314, 2023], we have derived a Flo...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
Molecules in molecular junctions are subject to current-induced forces that can break chemical bonds...
Due to their very nature, ultrafast phenomena are often accompanied by the occurrence of nonadiabati...
We investigate time-dependent electron transport through a molecular junction in the adiabatic limit...
Long metallic nanowires combine crucial factors for nonconservative current-driven atomic motion. Th...
Classical dynamical systems close to a critical point are known to act as efficient sensors due to a...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Performing molecular dynamics in electronically excited states requires the inclusion of nonadiabati...
We propose a very accurate computational scheme for the dynamics of a classical oscillator coupled t...
Many chemical processes involve nuclear dynamics on multiple potential energy surfaces. These often ...