We report on a proof of principle demonstration of an optically driven micromachine element. Optical angular momentum is transferred from a circularly polarized laser beam to a birefringent particle confined in an optical tweezers trap. The optical torque causes the particle to spin at up to 350 Hz, and this torque is harnessed to drive an optically trapped microfabricated structure. We describe a photolithographic method for producing the microstructures and show how a light driven motor could be used in a micromachine system
A strongly focused laser beam can be used to trap, manipulate and exert torque on a microparticle. T...
We integrate the optical elements required to generate optical orbital angular momentum into a micro...
International audienceWe study the rotational motion of objects trapped in a focused laser beam (opt...
We report on a proof of principle demonstration of an optically driven micromachine element. Optical...
We review the basic theory and principles of optically driven micromachines, and present a series of...
The properties of the light-driven micromachines were discussed. Micromachines have potential advant...
Optical forces and torques acting on microscopic objects trapped in focussed laser beams promise fle...
We outline in general the role and potential areas of application for the use of optical torque in o...
The ability to exert optical torques to rotationally manipulate microparticles has developed from an...
We design, fabricate and test optically driven microrotors a few microns in size. The rotors are tra...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
We present details of the design, construction and testing of a single-beam optical tweezers apparat...
Abstract Micro-motors driven by light field have attracted much attentions for their potential appli...
The optical processes involved in laser trapping and optical manipulation are explored theoretically...
A strongly focused laser beam can be used to trap, manipulate and exert torque on a microparticle. T...
We integrate the optical elements required to generate optical orbital angular momentum into a micro...
International audienceWe study the rotational motion of objects trapped in a focused laser beam (opt...
We report on a proof of principle demonstration of an optically driven micromachine element. Optical...
We review the basic theory and principles of optically driven micromachines, and present a series of...
The properties of the light-driven micromachines were discussed. Micromachines have potential advant...
Optical forces and torques acting on microscopic objects trapped in focussed laser beams promise fle...
We outline in general the role and potential areas of application for the use of optical torque in o...
The ability to exert optical torques to rotationally manipulate microparticles has developed from an...
We design, fabricate and test optically driven microrotors a few microns in size. The rotors are tra...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
We present details of the design, construction and testing of a single-beam optical tweezers apparat...
Abstract Micro-motors driven by light field have attracted much attentions for their potential appli...
The optical processes involved in laser trapping and optical manipulation are explored theoretically...
A strongly focused laser beam can be used to trap, manipulate and exert torque on a microparticle. T...
We integrate the optical elements required to generate optical orbital angular momentum into a micro...
International audienceWe study the rotational motion of objects trapped in a focused laser beam (opt...