The tapping mode is one of the mostly employed techniques in atomic force microscopy due to its accurate imaging quality for a wide variety of surfaces. However, chaotic microcantilever motion impairs the obtention of accurate images from the sample surfaces. In order to investigate the problem the tapping mode atomic force microscope is modeled and chaotic motion is identified for a wide range of the parameter's values. Additionally, attempting to prevent the chaotic motion, two control techniques are implemented: the optimal linear feedback control and the time-delayed feedback control. The simulation results show the feasibility of the techniques for chaos control in the atomic force microscopy. © 2012 IMechE
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
Many investigations have focused on steady-state nonlinear dynamics of cantilevers in tapping mode a...
In this chapter, we explore a mathematical modelling that describes the nonlinear dynamic behavior o...
During the last 30 years the Atomic Force Microscopy became the most powerful tool for surface probi...
We successfully demonstrated the first experimental stabilization of irregular and non-periodic cant...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
Nonlinear motion of the microcantilever probe in the Atomic Force Microscope (AFM) has been extensiv...
In this paper, we study the dynamical behaviour of a microcantilever-sample system that forms the ba...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
\u3cp\u3eThis paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscop...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
Many investigations have focused on steady-state nonlinear dynamics of cantilevers in tapping mode a...
In this chapter, we explore a mathematical modelling that describes the nonlinear dynamic behavior o...
During the last 30 years the Atomic Force Microscopy became the most powerful tool for surface probi...
We successfully demonstrated the first experimental stabilization of irregular and non-periodic cant...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
Nonlinear motion of the microcantilever probe in the Atomic Force Microscope (AFM) has been extensiv...
In this paper, we study the dynamical behaviour of a microcantilever-sample system that forms the ba...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
\u3cp\u3eThis paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscop...
This paper investigates the closed-loop dynamics of the Tapping Mode Atomic Force Microscopy using a...
Many investigations have focused on steady-state nonlinear dynamics of cantilevers in tapping mode a...
In this chapter, we explore a mathematical modelling that describes the nonlinear dynamic behavior o...