Numerical simulations of the frequency modulation atomic force microscope, including the whole dynamical regulation by the electronics, show that the cantilever dynamics is conditionally stable and that there is a direct link between the frequency shift and the conservative tip-sample interaction. However, a soft coupling between the electronics and the nonlinearity of the interaction may significantly affect the damping. A resonance between the scan speed and the response time of the system can provide a simple explanation for the spatial shift and contrast inversion between topographical and damping images, and for the extreme sensitivity of the damping to a tip chang
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Cataloged from PDF version of article.We analyze the steady state tip sample interaction in atomic f...
金沢大学理工研究域 数物科学系The importance of identifying effects that pertain to the operation of frequency modu...
The resonance frequency and the damping behaviour of a vibrating cantilever as used in dynamic Scann...
A molecular dynamics model is presented, which adds harmonic potentials to the atomic interactions t...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Cataloged from PDF version of article.We analyze the steady state tip sample interaction in atomic f...
金沢大学理工研究域 数物科学系The importance of identifying effects that pertain to the operation of frequency modu...
The resonance frequency and the damping behaviour of a vibrating cantilever as used in dynamic Scann...
A molecular dynamics model is presented, which adds harmonic potentials to the atomic interactions t...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
The aim of this article is to provide a complete analysis of the behavior of a noncontact atomic for...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Increasing the signal-to-noise ratio in dynamic atomic force microscopy plays a key role in nanomech...
Cataloged from PDF version of article.We analyze the steady state tip sample interaction in atomic f...