Micrometer-scale acoustic waves are highly useful for refined optomechanical and acoustofluidic manipulation, where these fields are spatially localized along the transducer aperture but not along the acoustic propagation direction. In the case of acoustic tweezers, such a conventional acoustic standing wave results in particle and cell patterning across the entire width of a microfluidic channel, preventing selective trapping. We demonstrate the use of nanosecond-scale pulsed surface acoustic waves (SAWs) with a pulse period that is less than the time of flight between opposing transducers to generate localized time-averaged patterning regions while using conventional electrode structures. These nodal positions can be readily and arbitrari...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...
Micrometer-scale acoustic waves are highly useful for refined optomechanical and acoustofluidic mani...
Micrometer-scale acoustic waves are highly useful for refined optomechanical and acoustofluidic mani...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
Surface acoustic waves can induce force gradients on the length scales of micro- and nanoparticles, ...
Surface acoustic waves can induce force gradients on the length scales of micro- and nanoparticles, ...
We introduce a technique to control the position and effective area of the surface acoustic wave (SA...
We introduce a technique to control the position and effective area of the surface acoustic wave (SA...
Surface acoustic wave (SAW) technology has been widely used to manipulate microparticles and biologi...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Nanoacoustic fields are a promising method for particle actuation at the nanoscale, though THz frequ...
We present a numerical and experimental study of acoustophoretic manipulation in a microfluidic chan...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...
Micrometer-scale acoustic waves are highly useful for refined optomechanical and acoustofluidic mani...
Micrometer-scale acoustic waves are highly useful for refined optomechanical and acoustofluidic mani...
Surface acoustic waves offer a versatile and biocompatible method of manipulating the location of su...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
Surface acoustic waves can induce force gradients on the length scales of micro- and nanoparticles, ...
Surface acoustic waves can induce force gradients on the length scales of micro- and nanoparticles, ...
We introduce a technique to control the position and effective area of the surface acoustic wave (SA...
We introduce a technique to control the position and effective area of the surface acoustic wave (SA...
Surface acoustic wave (SAW) technology has been widely used to manipulate microparticles and biologi...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Nanoacoustic fields are a promising method for particle actuation at the nanoscale, though THz frequ...
We present a numerical and experimental study of acoustophoretic manipulation in a microfluidic chan...
We demonstrate that surface acoustic waves (SAWs), nanometer amplitude Rayleigh waves driven at mega...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic sy...