Publication | Open Access
Laser vaporization of cirrus-like ice particles with secondary ice multiplication
17
Citations
50
References
2016
Year
EngineeringUltrashort Laser FilamentsLaser ApplicationsHigh-power LasersIce ParticlesOptical PropertiesCloud PhysicsIce-water SystemPhysicsAtmospheric IcingCloud DynamicLaser IlluminationCold ChemistryCryosphereCloud PhysicNatural SciencesLaser-induced BreakdownIce-structure InteractionLaser Vaporization
We investigate the interaction of ultrashort laser filaments with individual 90-μm ice particles, representative of cirrus particles. The ice particles fragment under laser illumination. By monitoring the evolution of the corresponding ice/vapor system at up to 140,000 frames per second over 30 ms, we conclude that a shockwave vaporization supersaturates the neighboring region relative to ice, allowing the nucleation and growth of new ice particles, supported by laser-induced plasma photochemistry. This process constitutes the first direct observation of filament-induced secondary ice multiplication, a process that strongly modifies the particle size distribution and, thus, the albedo of typical cirrus clouds.
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