In the atomic force microscope, the nanoscale force topography of even complex surface superstructures is extracted by the changing vibration frequency of a scanning tip. An alternative dissipation topography with similar or even better contrast has been demonstrated recently by mapping the (x,y) -dependent tip damping but the detailed damping mechanism is still unknown. Here we identify two different tip dissipation mechanisms: local mechanical softness and hysteresis. Motivated by recent data, we describe both of them in a one-dimensional model of Moiré superstructures of incommensurate overlayers. Local softness at "soliton" defects yields a dissipation contrast that can be much larger than the corresponding density or corrugation contra...
Oscillatory solvation forces in liquid were studied using off-resonance, low-amplitude, sample-modul...
We demonstrate the existence of a previously unknown damped oscillating signal just after the point ...
A molecular dynamics model is presented, which adds harmonic potentials to the atomic interactions t...
In the atomic force microscope, the nanoscale force topography of even complex surface superstru...
In the atomic force microscope, the nanoscale force topography of even complex surface superstructur...
We re-examine the calculation of the dissipation energy in the non-contact atomic force microscope f...
A possible mechanism of atomic scale dissipation in non-contact atomic force microscopy (NC-AFM) is ...
Complex interplay between topography and dissipation signals in Non-Contact Atomic Force Microscopy ...
We present a general theory of atomistic dynamical response in surface probe microscopy when two sol...
The irreversible loss of energy that occurs when a nanoscale tip vibrates over a surface can be moni...
Using a virtual dynamic atomic force microscope, that explicitly simulates the operation of a non-co...
Atomic scale dissipation is of great interest in nanomechanics and atomic manipulation. We present d...
We study the coupling of lateral and normal tip oscillations and its effect on the imaging process o...
Using model ionic systems and the recently proposed theory of dynamical response at close approach (...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
Oscillatory solvation forces in liquid were studied using off-resonance, low-amplitude, sample-modul...
We demonstrate the existence of a previously unknown damped oscillating signal just after the point ...
A molecular dynamics model is presented, which adds harmonic potentials to the atomic interactions t...
In the atomic force microscope, the nanoscale force topography of even complex surface superstru...
In the atomic force microscope, the nanoscale force topography of even complex surface superstructur...
We re-examine the calculation of the dissipation energy in the non-contact atomic force microscope f...
A possible mechanism of atomic scale dissipation in non-contact atomic force microscopy (NC-AFM) is ...
Complex interplay between topography and dissipation signals in Non-Contact Atomic Force Microscopy ...
We present a general theory of atomistic dynamical response in surface probe microscopy when two sol...
The irreversible loss of energy that occurs when a nanoscale tip vibrates over a surface can be moni...
Using a virtual dynamic atomic force microscope, that explicitly simulates the operation of a non-co...
Atomic scale dissipation is of great interest in nanomechanics and atomic manipulation. We present d...
We study the coupling of lateral and normal tip oscillations and its effect on the imaging process o...
Using model ionic systems and the recently proposed theory of dynamical response at close approach (...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
Oscillatory solvation forces in liquid were studied using off-resonance, low-amplitude, sample-modul...
We demonstrate the existence of a previously unknown damped oscillating signal just after the point ...
A molecular dynamics model is presented, which adds harmonic potentials to the atomic interactions t...