International audienceFast and label-free techniques to analyze viruses and bacteria are of crucial interest in biological and bio-medical applications. For this purpose, optofluidic systems based on the integration of photonic structures with microfluidic layers were shown to be promising tools for biological analysis, thanks to their small footprint and to their ability to manipulate objects using low powers. In this letter, we report on the optical trapping of living bacteria in a 2D silicon hollow photonic crystal cavity. This structure allows for the Gram-type differentiation of bacteria at the single cell scale, in a fast, label-free, and non-destructive way
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 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 ...
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 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...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
During the last decade, the development of optofluidic chips has become a large field of research. T...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
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...
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 ...
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 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...
International audienceThe development of methods for the rapid analysis of pathogenic bacteria or vi...
During the last decade, the development of optofluidic chips has become a large field of research. T...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
On-chip optical trapping and manipulation of cells based on the evanescent field of photonic structu...
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...