We present a method for the detection of nanoparticles in solution using an acoustically actuated holographic microscope. This type of microscopy can be used for high-throughput biosensing applications, e.g., detection of viruses in a liquid
Acoustic waves can penetrate into materials, and thus it is possible to study the microstructure of ...
The interaction between nanoparticles and the electromagnetic fields associated with optical nanostr...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
We present a method for the detection of nanoparticles in solution using an acoustically actuated ho...
We present a method for the detection of nanoparticles in solution using an acoustically actuated ho...
The optical detection of nanoparticles, including viruses and bacteria, underpins many of the biolog...
Matlab code to support the associated paper. Please note that there is a newer version of this da...
International audienceThe bioassay of infinitesimal quantities of protein markers in biological samp...
Identification of nanoparticles and nanosystems into cells and biological matrices is a hot research...
The development of techniques able to characterize and map the pressure field is crucial for the wid...
Analysis shows that acoustic imaging based on the detection of ultrasonic fields using a modified at...
Integration of acoustically actuated nanolenses into a lens-free microscopy enables a cost-effective...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
International audienceThe fast and efficient detection of foodborne pathogens is a societal priority...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
Acoustic waves can penetrate into materials, and thus it is possible to study the microstructure of ...
The interaction between nanoparticles and the electromagnetic fields associated with optical nanostr...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
We present a method for the detection of nanoparticles in solution using an acoustically actuated ho...
We present a method for the detection of nanoparticles in solution using an acoustically actuated ho...
The optical detection of nanoparticles, including viruses and bacteria, underpins many of the biolog...
Matlab code to support the associated paper. Please note that there is a newer version of this da...
International audienceThe bioassay of infinitesimal quantities of protein markers in biological samp...
Identification of nanoparticles and nanosystems into cells and biological matrices is a hot research...
The development of techniques able to characterize and map the pressure field is crucial for the wid...
Analysis shows that acoustic imaging based on the detection of ultrasonic fields using a modified at...
Integration of acoustically actuated nanolenses into a lens-free microscopy enables a cost-effective...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
International audienceThe fast and efficient detection of foodborne pathogens is a societal priority...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
Acoustic waves can penetrate into materials, and thus it is possible to study the microstructure of ...
The interaction between nanoparticles and the electromagnetic fields associated with optical nanostr...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...