Publication | Open Access
The effect of long timescale gas dynamics on femtosecond filamentation
150
Citations
21
References
2013
Year
PhotonicsEngineeringPhysicsGas DensityOptical PropertiesLaser-induced BreakdownFemtosecond Laser PulsesApplied PhysicsLaser ApplicationsLaser-plasma InteractionFemtosecond FilamentationThermal DiffusionHigh-power LasersBiophysicsUltrafast LasersOptoelectronics
Femtosecond laser pulses filamenting in various gases are shown to generate long- lived quasi-stationary cylindrical depressions or 'holes' in the gas density. For our experimental conditions, these holes range up to several hundred microns in diameter with gas density depressions up to ~20%. The holes decay by thermal diffusion on millisecond timescales. We show that high repetition rate filamentation and supercontinuum generation can be strongly affected by these holes, which should also affect all other experiments employing intense high repetition rate laser pulses interacting with gases.
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