High-speed atomic force microscopy enables in situ studies of dynamic phenomena at the nanometer-scale. This paper presents the design, fabrication, and evaluation of an integrated magnetic actuation system for high-speed atomic force microscopy. The proposed system consists of a microcantilever probe with an attached permanent magnet particle and a microactuator for generation of magnetic field. Novel geometries are proposed for the probe, the magnetic particle, and the actuator that together result in a high bandwidth and adequate actuation gain. A lumped parameter model is developed for the probe's dynamics and employed to optimize its design. Subsequently the integrated actuation system has been fabricated and evaluated. The actuator ha...
A new procedure for high-speed imaging with the atomic force microscope that combines an integrated ...
Abstract—An XYZ nanopositioner is designed for fast the atomic force microscopy. The first resonant ...
This paper presents a dual-stage approach to nanopositioning in which the tradeoff between the scann...
High-speed atomic force microscopy enables in situ studies of dynamic phenomena at the nanometer-sca...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Video-rate imaging and property sensing with nanoscale precision is a subject of immense interest to...
We report a modular atomic force microscope (AFM) design for biomolecular experiments. The AFM head ...
We describe a novel radiation pressure based cantilever excitation method for imaging in dynamic mod...
One of the major limitations in the speed of the atomic force microscope (AFM) is the bandwidth of t...
SINCE its invention in 1986, the atomic force microscope (AFM) has revolutionised the field of nanot...
This research is focused on improving the mechatronic design and control strategies of Atomic Force ...
International audienceThis work aims at increasing the velocity of micrometer scale particles contro...
We present the design, fabrication and characterization of an electrostatically actuated AFM probe. ...
The present invention relates to a biomolecular measurement system (1), which enables to measure the...
Abstract—An XYZ nanopositioner is designed for fast the atomic force microscopy. The first resonant ...
A new procedure for high-speed imaging with the atomic force microscope that combines an integrated ...
Abstract—An XYZ nanopositioner is designed for fast the atomic force microscopy. The first resonant ...
This paper presents a dual-stage approach to nanopositioning in which the tradeoff between the scann...
High-speed atomic force microscopy enables in situ studies of dynamic phenomena at the nanometer-sca...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Video-rate imaging and property sensing with nanoscale precision is a subject of immense interest to...
We report a modular atomic force microscope (AFM) design for biomolecular experiments. The AFM head ...
We describe a novel radiation pressure based cantilever excitation method for imaging in dynamic mod...
One of the major limitations in the speed of the atomic force microscope (AFM) is the bandwidth of t...
SINCE its invention in 1986, the atomic force microscope (AFM) has revolutionised the field of nanot...
This research is focused on improving the mechatronic design and control strategies of Atomic Force ...
International audienceThis work aims at increasing the velocity of micrometer scale particles contro...
We present the design, fabrication and characterization of an electrostatically actuated AFM probe. ...
The present invention relates to a biomolecular measurement system (1), which enables to measure the...
Abstract—An XYZ nanopositioner is designed for fast the atomic force microscopy. The first resonant ...
A new procedure for high-speed imaging with the atomic force microscope that combines an integrated ...
Abstract—An XYZ nanopositioner is designed for fast the atomic force microscopy. The first resonant ...
This paper presents a dual-stage approach to nanopositioning in which the tradeoff between the scann...