Laser-induced hydrodynamic instability of fluid interfaces
arXiv:physics/0302085 · doi:10.1103/PhysRevLett.90.144503
Abstract
We report on a new class of electromagnetically-driven fluid interface instability. Using the optical radiation pressure of a cw laser to bend a very soft near-critical liquid-liquid interface, we show that it becomes unstable for sufficiently large beam power P, leading to the formation of a stationary beam-centered liquid micro-jet. We explore the behavior of the instability onset by tuning the interface softness with temperature and varying the size of the exciting beam. The instability mechanism is experimentally demonstrated. It simply relies on total reflection of light at the deformed interface whose condition provides the universal scaling relation for the onset Ps of the instability.
4 pages, 4 figures. submitted for publication in Physical Review Letters
Cited by in corpus (17)
- Laser microfluidics: fluid actuation by light
- Liquid Transport Due to Light Scattering
- Unconditional jetting
- Asymmetric Optical Radiation Pressure Effects on Liquid Interfaces Under Intense Illumination
- Analysis of Recent Interpretations of the Abraham-Minkowski Problem
- Minkowski Momentum Resulting from a Vacuum-Medium Mapping Procedure, and a Brief Review of Minkowski Momentum Experiments
- Radiation Forces and the Abraham-Minkowski Problem
- Non-Linear Deformations of Liquid-Liquid Interfaces Induced by Electromagnetic Radiation Pressure
- Simulation of an optically induced asymmetric deformation of a liquid-liquid interface
- Theory of microdroplet and microbubble deformation by Gaussian laser beam
- Stretching and squeezing of sessile dielectric drops by the optical radiation pressure
- Optohydrodynamics of soft fluid interfaces : Optical and viscous nonlinear effects
- The Microscopic Ampère formulation for the electromagnetic force density in linear dielectrics
- Nonlinear Laser-Induced Deformations of Liquid-Liquid Interfaces: an Optical Fiber Model
- Numerical simulation of universal morphogenesis of fluid interface deformations driven by radiation pressure
- Proposal to repeat the Abraham force experiment using giant permittivity materials
- Remarks on the Abraham-Minkowski problem, from the formal and from the experimental side