Mechanical properties of metallic-nanowire self-oscillations are investigated through a coherent-state analysis. We focus on elucidating the time behavior of quantum energy in such oscillations, in addition to the analysis of fluctuations, evolution of eigenstates, and oscillatory trajectories. The quantum energy varies somewhat randomly at first, but, at a later time, it undergoes a stable periodical oscillation; the mean energy in the stabilized motion is large when the frequency of the driving force is resonated with that of the intrinsic oscillation of the nanowire. We confirmed that when the oscillatory amplitude is sufficiently low, the quantum energy is quite different from the classical one due to zero-point energy which appears in ...
We investigate the nonlinear mechanics of a bimetallic, optically absorbing SiN-Nb nanowire in the p...
Quantum growth refers to the phenomena in which the quantum mechanically confined motion of electron...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
Quantum characteristics of a mass-accreting oscillator are investigated using the invariant operator...
When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology f...
Remarkable features have been predicted for the mechanical fluctuations at the bistability transitio...
Self-oscillations are the result of an efficient mechanism generating periodic motion from a constan...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
We theoretically investigate the nonlinear optical response of a heterodimer comprising a semiconduc...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
For the past three decades nanoscience has widely affected many areas in physics, chemistry and engi...
Nanomechanics has brought mesoscopic physics into the world of vibrations. Because nanomechanical sy...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
We investigate the nonlinear mechanics of a bimetallic, optically absorbing SiN-Nb nanowire in the p...
Quantum growth refers to the phenomena in which the quantum mechanically confined motion of electron...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
Quantum characteristics of a mass-accreting oscillator are investigated using the invariant operator...
When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology f...
Remarkable features have been predicted for the mechanical fluctuations at the bistability transitio...
Self-oscillations are the result of an efficient mechanism generating periodic motion from a constan...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
We theoretically investigate the nonlinear optical response of a heterodimer comprising a semiconduc...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
For the past three decades nanoscience has widely affected many areas in physics, chemistry and engi...
Nanomechanics has brought mesoscopic physics into the world of vibrations. Because nanomechanical sy...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
We investigate the nonlinear mechanics of a bimetallic, optically absorbing SiN-Nb nanowire in the p...
Quantum growth refers to the phenomena in which the quantum mechanically confined motion of electron...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...