Publication | Open Access
Doppler Spectrometry for Ultrafast Temporal Mapping of Density Dynamics in Laser-Induced Plasmas
45
Citations
15
References
2010
Year
EngineeringLaser-plasma InteractionPlasma PhysicsOptical PropertiesPlasma SimulationHigh Resolution MeasurementsLaser-induced PlasmasMagnetohydrodynamicsCritical SurfaceDensity DynamicsInstrumentationPhysicsLaser SpectroscopyApplied Plasma PhysicUltrafast Temporal DynamicsUltrafast Temporal MappingSynchrotron RadiationNatural SciencesSpectroscopyLaser-induced BreakdownApplied Physics
We present high resolution measurements of the ultrafast temporal dynamics of the critical surface in moderately overdense, hot plasma by using two-color, pump-probe Doppler spectrometry. Our measurements clearly capture the initial inward motion of the plasma inside the critical surface of the pump laser which is followed by outward expansion. The measured instantaneous velocity and acceleration profiles are very well reproduced by a hybrid simulation that uses a 1D electromagnetic particle-in-cell simulation for the initial evolution and a hydrodynamics simulation for the later times. The combination of high temporal resolution and dynamic range in our measurements clearly provides quantitative unraveling of the dynamics in this important region, enabling this as a powerful technique to obtain ultrafast snapshots of plasma density and temperature profiles for providing benchmarks for simulations.
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