Optical forces and torques acting on microscopic objects trapped in focussed laser beams promise flexible methods of driving micromachines through a microscope cover slip or even a cell wall. We are endeavouring to engineer special purpose micro-objects for a range of tasks. Colloidal self assembly of calcium carbonate provides birefringent spheres which can exert considerable torque, while two photon polymerisation allows us to fabricate objects of arbitrary shape that can be designed to exchange both spin and orbital angular momentum. Numerical calculations of forces and torques can allow an optimal design, and optical measurements provide us with certain knowledge of the forces and torques which are actually exerted
The properties of the light-driven micromachines were discussed. Micromachines have potential advant...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical trapping and micromanipulation has developed from an interesting novelty to a powerful and w...
Two-photon polymerization of optically curing resins is a powerful method to fabricate micron sized ...
We report on a proof of principle demonstration of an optically driven micromachine element. Optical...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
The ability to exert optical torques to rotationally manipulate microparticles has developed from an...
We outline in general the role and potential areas of application for the use of optical torque in o...
We integrate the optical elements required to generate optical orbital angular momentum into a micro...
We review the basic theory and principles of optically driven micromachines, and present a series of...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
A strongly focused laser beam can be used to trap, manipulate and exert torque on a microparticle. T...
International audienceThis study presents a photo-driven micro-lever fabricated to multiply optical ...
Optical Tweezers are very useful systems to manipulate micro-scale objects in confined spaces. To pr...
The properties of the light-driven micromachines were discussed. Micromachines have potential advant...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical trapping and micromanipulation has developed from an interesting novelty to a powerful and w...
Two-photon polymerization of optically curing resins is a powerful method to fabricate micron sized ...
We report on a proof of principle demonstration of an optically driven micromachine element. Optical...
Two-photon photopolymerization of optically curable resins is a powerful tool for fabricating microm...
The ability to exert optical torques to rotationally manipulate microparticles has developed from an...
We outline in general the role and potential areas of application for the use of optical torque in o...
We integrate the optical elements required to generate optical orbital angular momentum into a micro...
We review the basic theory and principles of optically driven micromachines, and present a series of...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
A strongly focused laser beam can be used to trap, manipulate and exert torque on a microparticle. T...
International audienceThis study presents a photo-driven micro-lever fabricated to multiply optical ...
Optical Tweezers are very useful systems to manipulate micro-scale objects in confined spaces. To pr...
The properties of the light-driven micromachines were discussed. Micromachines have potential advant...
Manipulating and utilizing light in nanoscale are becoming tasks of not only scientific interest, bu...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...