International audienceWe propose a novel approach in optical trapping exploiting mesoscopic photonic crystal microcavities. Full light confinement in mesoscopic photonic crystal membranes, forming a mesoscopic self-collimating 1D Fabry-Pérot cavity, was theoretically predicted and experimentally verified by the authors in previous papers. In this paper, we numerically demonstrate a high performance MPhC microcavity for optical trapping of fine particulate matter in air. The MPhC cavity has been simulated by 3D FDTD simulations while the trapping potential has been evaluated by means of the gradient force density convolution method. We numerically show that it is possible to obtain very high trapping potential for polystyrene particles havin...
We theoretically investigate the opto-mechanical interactions between a dielectric nanoparticle and ...
The recent years have highlighted the potential of photonic nanostructures to extend the capabilitie...
During the last decade, the development of optofluidic chips has become a large field of research. T...
International audienceWe propose a novel approach in optical trapping exploiting mesoscopic photonic...
International audienceFull light confinement in mesoscopic photonic crystal membranes, forming a mes...
International audienceIn this contribution we present the preliminary results of the experimental ch...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
International audienceIn this work, we report the auto-assembly experiments of micrometer sized part...
We show that the photonic confinement induced by a photonic crystal can be exploited to trap nanopar...
A photonic crystal (PC) structure for trapping a 50nm radius dielectric particle at a precise locati...
Photonic crystal (PhC) devices owing to their strong confinement of electromagnetic energy are consi...
In this article, microparticles are manipulated inside an optofluidic Fabry-Perot cylindrical cavity...
International audienceIn this article, microparticles are manipulated inside an optofluidic Fabry–Pé...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
The dual beam fiber trap is an important tool in the field of optical micromanipulation. The charact...
We theoretically investigate the opto-mechanical interactions between a dielectric nanoparticle and ...
The recent years have highlighted the potential of photonic nanostructures to extend the capabilitie...
During the last decade, the development of optofluidic chips has become a large field of research. T...
International audienceWe propose a novel approach in optical trapping exploiting mesoscopic photonic...
International audienceFull light confinement in mesoscopic photonic crystal membranes, forming a mes...
International audienceIn this contribution we present the preliminary results of the experimental ch...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
International audienceIn this work, we report the auto-assembly experiments of micrometer sized part...
We show that the photonic confinement induced by a photonic crystal can be exploited to trap nanopar...
A photonic crystal (PC) structure for trapping a 50nm radius dielectric particle at a precise locati...
Photonic crystal (PhC) devices owing to their strong confinement of electromagnetic energy are consi...
In this article, microparticles are manipulated inside an optofluidic Fabry-Perot cylindrical cavity...
International audienceIn this article, microparticles are manipulated inside an optofluidic Fabry–Pé...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
The dual beam fiber trap is an important tool in the field of optical micromanipulation. The charact...
We theoretically investigate the opto-mechanical interactions between a dielectric nanoparticle and ...
The recent years have highlighted the potential of photonic nanostructures to extend the capabilitie...
During the last decade, the development of optofluidic chips has become a large field of research. T...