Since a photon carries both energy and momentum, when it interacts with a particle, photon-particle energy and momentum transfer occur, resulting in mechanical forces acting on the particle. In this paper we report our theoretical study on the use of a laser beam to manipulate and control the flow of nanofluids in a micro-channel. We calculate the velocity induced by a laser beam for TiO2, Fe2O3, Al2O3 MgO, and SiO2 nanoparticles with water as the base fluid. The particle diameter is 50 nm and the laser beam is a 4 W continuous beam of 6 mm diameter and 532 nm wavelength. The results indicate that, as the particle moves, a significant volume of the surrounding water (up to about 8 particle diameters away from the particle surface) is distur...
Microbubbles are increasingly playing an important role in medicine and environmental waste manageme...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since a photon carries both energy and momentum, when it interacts with a particle, photon-particle ...
Optical force offers a promise of being applied as a noninvasive manipulation tool for microscopic o...
Abstract Optofluidics is an emerging field which combines microfluidics and optics, having widespre...
We demonstrate a method for generating flow within a microfluidic channel using an optically driven ...
Empirical thesis.Bibliography: pages 71-74.1. Introduction -- 2. Background and theory -- 3. Microfl...
A great challenge in microfluidics is the precise control of laser radiation forces acting on single...
The behavior of nanoparticle motion has a great influence on gas-liquid mass transfer. However, it h...
Interest in microfluidics is rapidly expanding and the use of microchips as miniature chemical react...
Abstract Modulated continuous wave (CW) lasers cause photothermal effect that leads to rapid optical...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
We show movements of microparticles using both continuous and discontinuous laser irradiation on an ...
Optofluidics: Light forces for controlling heat nanosources and fluid flows New opportunities for co...
Microbubbles are increasingly playing an important role in medicine and environmental waste manageme...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since a photon carries both energy and momentum, when it interacts with a particle, photon-particle ...
Optical force offers a promise of being applied as a noninvasive manipulation tool for microscopic o...
Abstract Optofluidics is an emerging field which combines microfluidics and optics, having widespre...
We demonstrate a method for generating flow within a microfluidic channel using an optically driven ...
Empirical thesis.Bibliography: pages 71-74.1. Introduction -- 2. Background and theory -- 3. Microfl...
A great challenge in microfluidics is the precise control of laser radiation forces acting on single...
The behavior of nanoparticle motion has a great influence on gas-liquid mass transfer. However, it h...
Interest in microfluidics is rapidly expanding and the use of microchips as miniature chemical react...
Abstract Modulated continuous wave (CW) lasers cause photothermal effect that leads to rapid optical...
Light and heat are synergistic tools used in the manipulation of nanoparticles and biomolecules. Whe...
We show movements of microparticles using both continuous and discontinuous laser irradiation on an ...
Optofluidics: Light forces for controlling heat nanosources and fluid flows New opportunities for co...
Microbubbles are increasingly playing an important role in medicine and environmental waste manageme...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...