We demonstrate the use of surface acoustic wave nebulization (SAWN) to load optical traps. We show that the droplets sizes produced can be tuned by altering the RF frequency applied to the devices, which leads to more control over the sizes of trapped particles. Typically the size distribution of the liquid aerosols delivered using SAWN is smaller than via a standard commercial nebulization device. The ability to trap a range of liquids or small solid particles, not readily accessible using other ultrasonic devices, is also demonstrated both in optical tweezers and dual beam fiber traps. © 2013 Optical Society of America
Targeted delivery of medication to specific sites in the body can be achieved effectively via non-in...
We demonstrate a method for the optical trapping of solid aerosol particles. Suspension of silica pa...
Surface acoustic wave atomization is a rapid means for generating micron and submicron aerosol dropl...
We demonstrate the use of surface acoustic wave nebulization (SAWN) to load optical traps. We show t...
High density micron sized aerosols from liquid surfaces were generated using surface acoustic wave (...
High density micron sized aerosols from liquid surfaces were generated using surface acoustic wave (...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
A device is disclosed for the preparation of nebulised droplets, for inhalation. The device has: a s...
Microvolcano like surface acoustic wave (SAW) nebulization/ atomization has been realised on ZnO fil...
A rapid particle concentration method in a sessile droplet has been developed using asymmetric surfa...
Efficient nebulization of liquid sessile droplets (water and water/glycerol mixtures) was investigat...
Surface acoustic wave atomization is promising in various kinds of industrial and pharmaceutical pro...
Targeted delivery of medication to specific sites in the body can be achieved effectively via non-in...
We demonstrate a method for the optical trapping of solid aerosol particles. Suspension of silica pa...
Surface acoustic wave atomization is a rapid means for generating micron and submicron aerosol dropl...
We demonstrate the use of surface acoustic wave nebulization (SAWN) to load optical traps. We show t...
High density micron sized aerosols from liquid surfaces were generated using surface acoustic wave (...
High density micron sized aerosols from liquid surfaces were generated using surface acoustic wave (...
Surface acoustic wave (SAW) atomization is attractive for generating micron or submicron aerosols in...
Ultrafast particle and cell concentration is essential to the success of subsequent analytical proce...
In this work, we discuss and demonstrate the principle features of surface acoustic wave (SAW) aeros...
Surface acoustic wave (SAW) atomization has been found to be a rapid and efficient way for generatin...
A device is disclosed for the preparation of nebulised droplets, for inhalation. The device has: a s...
Microvolcano like surface acoustic wave (SAW) nebulization/ atomization has been realised on ZnO fil...
A rapid particle concentration method in a sessile droplet has been developed using asymmetric surfa...
Efficient nebulization of liquid sessile droplets (water and water/glycerol mixtures) was investigat...
Surface acoustic wave atomization is promising in various kinds of industrial and pharmaceutical pro...
Targeted delivery of medication to specific sites in the body can be achieved effectively via non-in...
We demonstrate a method for the optical trapping of solid aerosol particles. Suspension of silica pa...
Surface acoustic wave atomization is a rapid means for generating micron and submicron aerosol dropl...