On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structures is emerging as a promising technique, both in research and for applications in broader context. Relying on mass fabrication techniques, the involved integration of photonics and microfluidics allows control of both the flow of light and water on the scale of interest in single cell microbiology. In this paper, we demonstrate for the first time optical trapping of single bacteria (B. subtilis and E. coli) using photonic crystal cavities for local enhancement of the evanescent field, as opposed to the synthetic particles used so far. Three types of cavities (H0, H1 and L3) are studied, embedded in a planar photonic crystal and optimized for...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
During the last decade, the development of optofluidic chips has become a large field of research. T...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
Fast and label-free techniques to analyze viruses and bacteria are of crucial interest in biological...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
During the last decade, the development of optofluidic chips has become a large field of research. T...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
Fast and label-free techniques to analyze viruses and bacteria are of crucial interest in biological...
International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial ...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...
International audiencePhotonic crystals and microcavities can act as on-chip nano-optical tweezers f...