International audienceIn this work, we report the auto-assembly experiments of micrometer sized particles by optical trapping in the evanescent field of a photonic crystal nanocavity. The nanocavity is inserted inside an optofluidic cell designed to enable the real time control of the nanoresonator transmittance as well as the real time visualization of the particles motion in the vicinity of the nanocavity. It is demonstrated that the optical trap above the cavity enables the assembly of multiple particles in respect of different stable conformations
2015-07-22In this thesis, we experimentally demonstrate a novel self‐assembly technique using the ev...
International audienceWe report here the optical trapping of a heterogeneous colloidal dimer above a...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
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...
International audienceWe propose a novel approach in optical trapping exploiting mesoscopic photonic...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
During the last decade, the development of optofluidic chips has become a large field of research. T...
We experimentally demonstrate the technique of light-assisted, templated self-assembly (LATS) to tra...
We consider the interaction between a single rubidium atom and a photonic crystal nanocavity. Becaus...
On chips optical nanocavities have become useful tools for trapping and manipulation of colloidal ob...
On-chip optical tweezers based on evanescent fields overcome the diffraction limit of the free-space...
The optomechanical coupling between a resonant optical field and a nanoparticle through trapping for...
In this article, microparticles are manipulated inside an optofluidic Fabry-Perot cylindrical cavity...
2015-07-22In this thesis, we experimentally demonstrate a novel self‐assembly technique using the ev...
International audienceWe report here the optical trapping of a heterogeneous colloidal dimer above a...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...
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...
International audienceWe propose a novel approach in optical trapping exploiting mesoscopic photonic...
International audienceIn the present paper, we propose an approach based on slow Bloch mode microcav...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
During the last decade, the development of optofluidic chips has become a large field of research. T...
We experimentally demonstrate the technique of light-assisted, templated self-assembly (LATS) to tra...
We consider the interaction between a single rubidium atom and a photonic crystal nanocavity. Becaus...
On chips optical nanocavities have become useful tools for trapping and manipulation of colloidal ob...
On-chip optical tweezers based on evanescent fields overcome the diffraction limit of the free-space...
The optomechanical coupling between a resonant optical field and a nanoparticle through trapping for...
In this article, microparticles are manipulated inside an optofluidic Fabry-Perot cylindrical cavity...
2015-07-22In this thesis, we experimentally demonstrate a novel self‐assembly technique using the ev...
International audienceWe report here the optical trapping of a heterogeneous colloidal dimer above a...
In this review, we report on the design, fabrication, and characterization of photonic crystal array...