In this paper we are investigating the potential to employ small devices in crucial areas with limited volumes in electron microscopes. We present the analysis of the electric fields that are present in an electrostatically actuated micro electro mechanical systems (MEMS) device. The electric fields are modeled using finite elements methods (FEM). Preliminary results are shown from scanning electron microscope (SEM) measurements of an electrostatically actuated two degrees of freedom (2DOF) nanometer precision table. From the FEM results the influence of the electric fields on an electron beam traversing the devices can be calculated. This influence is calculated to be a trajectory displacement in the order of tens of nanometers for typical...
In electron microscopy, the motion of the sample features due to the interaction with the electron b...
"The manipulation of samples with micro manipulators sharps in the normal axis to the observation pl...
Electrons with an energy ranging from 0 to 50 keV are among the most versatile tools in nanotechnolo...
Abstract — In this paper we are investigating the potential to employ small devices in crucial areas...
thesisMicro-Electrical-Mechanical-Systems (MEMS) may contain mechanical parts that are often actuat...
In this paper we investigate the influence of tilted electrostatic actuators on the imaging in elect...
Scanning electron microscopy (SEM) is a perfect technique for micro-/nano-object imaging [1] and mov...
In this work, we designed a micro-electromechanical systems (MEMS) device that allows simultaneous d...
In this work, we designed a micro-electromechanical systems (MEMS) device that allows simultaneous d...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
Because of the rapid development of microfabricating and micromachining semiconductor devices, the n...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
There is a wide array of technologically significant materials whose response to electric and magnet...
In this paper, the mechanical-electronic behavior of a bulk-micromachined relay driven by electrosta...
One major concern since the development of the field ion microscope is the mechanical strength of th...
In electron microscopy, the motion of the sample features due to the interaction with the electron b...
"The manipulation of samples with micro manipulators sharps in the normal axis to the observation pl...
Electrons with an energy ranging from 0 to 50 keV are among the most versatile tools in nanotechnolo...
Abstract — In this paper we are investigating the potential to employ small devices in crucial areas...
thesisMicro-Electrical-Mechanical-Systems (MEMS) may contain mechanical parts that are often actuat...
In this paper we investigate the influence of tilted electrostatic actuators on the imaging in elect...
Scanning electron microscopy (SEM) is a perfect technique for micro-/nano-object imaging [1] and mov...
In this work, we designed a micro-electromechanical systems (MEMS) device that allows simultaneous d...
In this work, we designed a micro-electromechanical systems (MEMS) device that allows simultaneous d...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
Because of the rapid development of microfabricating and micromachining semiconductor devices, the n...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
There is a wide array of technologically significant materials whose response to electric and magnet...
In this paper, the mechanical-electronic behavior of a bulk-micromachined relay driven by electrosta...
One major concern since the development of the field ion microscope is the mechanical strength of th...
In electron microscopy, the motion of the sample features due to the interaction with the electron b...
"The manipulation of samples with micro manipulators sharps in the normal axis to the observation pl...
Electrons with an energy ranging from 0 to 50 keV are among the most versatile tools in nanotechnolo...