Optical Levitation of Liquid Drops by Radiation Pressure
Science · 1975 · 203 citations · 3 references
ElectrohydrodynamicsEngineeringNeutral Liquid DropsPhysicsMicrofabricationOptical PropertiesFluid MechanicsOptical LevitationApplied PhysicsWettingSurface TensionSuper-hydrophobic SurfaceParticle TechnologyElectric FieldOptical TrappingMicrofluidicsOptical Particle Sizing
Charged and neutral liquid drops in the diameter range from 1 to 40 microns can be stably levitated and manipulated with laser beams. The levitation technique has been extended toward smaller particles (about 1 micron), lower laser power (less than 1 milliwatt), and deeper traps (greater than ten times the particle's weight). The techniques developed here have particular importance in cloud physics, aerosol science, fluid dynamics, and optics. The interactions of the drops with light, the electric field, the surrounding gas, and one another can be observed with high precision.
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Acceleration and Trapping of Particles by Radiation Pressure
A. Ashkin · Physical Review Letters · 1970
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Optical Levitation by Radiation Pressure
A. Ashkin, J. M. Dziedzic · Applied Physics Letters · 1971
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Stability of optical levitation by radiation pressure
A. Ashkin, J. M. Dziedzic · Applied Physics Letters · 1974
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