A robust, compact optical measurement unit for motion measurement in micro-cantilever arrays enables development of portable micro-cantilever sensors. This paper reports on an optical beam deflection-based system to measure the deflection of micro-cantilevers in an array that employs a single laser source, a single detector, and a resonating reflector to scan the measurement laser across the array. A strategy is also proposed to extract the deflection of individual cantilevers from the acquired data. The proposed system and measurement strategy are experimentally evaluated and demonstrated to measure motion of multiple cantilevers in an array. (C) 2015 AIP Publishing LLC
Microcantilever motion detection is a useful tool for the characterization of the physical, chemical...
Abstract: We present the fabrication and characterisation of an integrated optical read-out scheme b...
This paper demonstrates the use of a single right-angle prism for the optical readout of micro-elect...
A robust, compact optical measurement unit for motion measurement in micro-cantilever arrays enables...
The idea of a cantilever-based biochemical/chemical sensor is quite simple: the surface of the canti...
Measurement of in-plane motion with high resolution and large bandwidth enables model-identification...
In this work we present parallel optical readout of a cantilever array which operates in dynamic mod...
Most atomic force microscopes and cantilever-based sensors use an optical laser beam detection syste...
The important characteristics of a detector for force spectroscopy measurements are sensitivity, lin...
This thesis demonstrates a novel displacement sensor with photonic structure a micro ring resonator ...
In this paper, we present metrology and control methods and techniques for electromagnetically actua...
Taking advantage of an off-the-shelf, high-quality but inexpensive optical detector, namely a DVD op...
Measurement of out-of-plane linear motion with high precision and bandwidth is indispensable for dev...
A multiple-point deflection technique has been developed for the instant measurement of microcantile...
The authors have designed and fabricated arrays of microcantilevers with a geometry that shows reduc...
Microcantilever motion detection is a useful tool for the characterization of the physical, chemical...
Abstract: We present the fabrication and characterisation of an integrated optical read-out scheme b...
This paper demonstrates the use of a single right-angle prism for the optical readout of micro-elect...
A robust, compact optical measurement unit for motion measurement in micro-cantilever arrays enables...
The idea of a cantilever-based biochemical/chemical sensor is quite simple: the surface of the canti...
Measurement of in-plane motion with high resolution and large bandwidth enables model-identification...
In this work we present parallel optical readout of a cantilever array which operates in dynamic mod...
Most atomic force microscopes and cantilever-based sensors use an optical laser beam detection syste...
The important characteristics of a detector for force spectroscopy measurements are sensitivity, lin...
This thesis demonstrates a novel displacement sensor with photonic structure a micro ring resonator ...
In this paper, we present metrology and control methods and techniques for electromagnetically actua...
Taking advantage of an off-the-shelf, high-quality but inexpensive optical detector, namely a DVD op...
Measurement of out-of-plane linear motion with high precision and bandwidth is indispensable for dev...
A multiple-point deflection technique has been developed for the instant measurement of microcantile...
The authors have designed and fabricated arrays of microcantilevers with a geometry that shows reduc...
Microcantilever motion detection is a useful tool for the characterization of the physical, chemical...
Abstract: We present the fabrication and characterisation of an integrated optical read-out scheme b...
This paper demonstrates the use of a single right-angle prism for the optical readout of micro-elect...