We demonstrated high-sensitivity measurement of photo-radiation pressure by applying frequency modulation (FM) detection for the resonance phenomenon of the micro-cantilever structure. We constructed a system to detect minute displacements using the optical-lever method and achieved a noise density of approximately 1pm/√Hz from the thermal vibration measurement. The resonance frequency shift was positive, which meant repulsive forces acted on the metal surface by way of the force generated due to incidence of the laser beam on the stainless-steel (SS) cantilever. For an incident light of 1mW intensity, a vibration amplitude of 0.687 nm and a radiation pressure of 0.378µN were measured experimentally
A sensitive photoacoustic detection approach employing a silicon cantilever is investigated for powe...
International audienceIn optical detection setups to measure the deflection of micro-cantilevers, pa...
In photo-thermal actuation, heat is added locally to a micro-cantilever by means of a laser. A fract...
International audienceDynamic free (spontaneous) and forced (optically excited) elastic vibration sp...
In this work a new method for excitation of Non-Contact Atomic Force Microscope (NCAFM) cantilevers ...
A new approach based on microcantilevers is presented to detect infrared photons with high sensitivi...
Radiation pressure exerted by light on any surface is the pressure generated by the momentum of impi...
We describe a novel radiation pressure based cantilever excitation method for imaging in dynamic mod...
We demonstrate the use of an astigmatic detection system (ADS) for resonance frequency identificatio...
To reduce the complexity in a nano-optomechanical system a pump and probe scheme using only a single...
It has been over 100 years since the first conclusive demonstration of radiation pressure by Lebe-de...
This paper describes sound-excited vibrations of a silicon cantilever resonator for measuring its re...
We report radiation force measurements to a precision of 100 femto-Newton using a high Q torsion bal...
Mechanical vibrations in micromachined silicon cantilever structures with typical dimensions of 1000...
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
A sensitive photoacoustic detection approach employing a silicon cantilever is investigated for powe...
International audienceIn optical detection setups to measure the deflection of micro-cantilevers, pa...
In photo-thermal actuation, heat is added locally to a micro-cantilever by means of a laser. A fract...
International audienceDynamic free (spontaneous) and forced (optically excited) elastic vibration sp...
In this work a new method for excitation of Non-Contact Atomic Force Microscope (NCAFM) cantilevers ...
A new approach based on microcantilevers is presented to detect infrared photons with high sensitivi...
Radiation pressure exerted by light on any surface is the pressure generated by the momentum of impi...
We describe a novel radiation pressure based cantilever excitation method for imaging in dynamic mod...
We demonstrate the use of an astigmatic detection system (ADS) for resonance frequency identificatio...
To reduce the complexity in a nano-optomechanical system a pump and probe scheme using only a single...
It has been over 100 years since the first conclusive demonstration of radiation pressure by Lebe-de...
This paper describes sound-excited vibrations of a silicon cantilever resonator for measuring its re...
We report radiation force measurements to a precision of 100 femto-Newton using a high Q torsion bal...
Mechanical vibrations in micromachined silicon cantilever structures with typical dimensions of 1000...
At the beginning of last century Einstein derived the statistics of the radiation pressure force flu...
A sensitive photoacoustic detection approach employing a silicon cantilever is investigated for powe...
International audienceIn optical detection setups to measure the deflection of micro-cantilevers, pa...
In photo-thermal actuation, heat is added locally to a micro-cantilever by means of a laser. A fract...