Long metallic nanowires combine crucial factors for nonconservative current-driven atomic motion. These systems have degenerate vibrational frequencies, clustered about a Kohn anomaly in the dispersion relation, that can couple under current to form nonequilibrium modes of motion growing exponentially in time. Such motion is made possible by nonconservative current-induced forces on atoms, and we refer to it generically as the waterwheel effect. Here the connection between the waterwheel effect and the stimulated directional emission of phonons propagating along the electron flow is discussed in an intuitive manner. Nonadiabatic molecular dynamics show that waterwheel modes self-regulate by reducing the current and by populating modes in ne...
We present a microscopic model, describing current-driven switching in metallic atomic-size contacts...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PDF ...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
We give a physical interpretation of the recently demonstrated nonconservative nature of interatomic...
Nanoelectromechanical systems are characterized by an intimate connection between electronic and mec...
We employ a semi-classical Langevin approach to study current-induced atomic dynamics in a partially...
We present general first-principles derivation of the expression for current-induced forces. The exp...
Sufficiently large electric current applied to metallic nanostructures can bring them far out of equ...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Nanoelectromechanical systems are characterized by an intimate connection between electronic and me...
The force exerted by the electrons on the nuclei of a current-carrying molecular junction can be man...
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 ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
In our recent paper [Mosallanejad et al., Phys. Rev. B 107(18), 184314, 2023], we have derived a Flo...
We present a microscopic model, describing current-driven switching in metallic atomic-size contacts...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PDF ...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...
We give a physical interpretation of the recently demonstrated nonconservative nature of interatomic...
Nanoelectromechanical systems are characterized by an intimate connection between electronic and mec...
We employ a semi-classical Langevin approach to study current-induced atomic dynamics in a partially...
We present general first-principles derivation of the expression for current-induced forces. The exp...
Sufficiently large electric current applied to metallic nanostructures can bring them far out of equ...
The coupled electronic-nuclear dynamics at molecule-metal interfaces are fundamental processes that ...
Nanoelectromechanical systems are characterized by an intimate connection between electronic and me...
The force exerted by the electrons on the nuclei of a current-carrying molecular junction can be man...
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 ...
Abstract. The force exerted by the electrons on the nuclei of a current-carrying molecular junction ...
In our recent paper [Mosallanejad et al., Phys. Rev. B 107(18), 184314, 2023], we have derived a Flo...
We present a microscopic model, describing current-driven switching in metallic atomic-size contacts...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PDF ...
The molecular junction geometry is modeled in terms of nuclear degrees of freedom that are embedded ...