Publication | Open Access
Observation of laser-induced stress waves and mechanism of structural changes inside rock-salt crystals
60
Citations
13
References
2011
Year
Rock TestingEngineeringLaser-induced Stress WavesLaser ApplicationsLaser AblationElastic SimulationOptical PropertiesBiophysicsMaterials ScienceStress WaveSalt DomeRock-salt CrystalsSolid MechanicsPhotoelasticityMicrostructureStructural GeologyLaser-induced BreakdownStructural ChangesApplied PhysicsGeomechanicsLaser-surface InteractionsMechanics Of Materials
The structural changes inside rock-salt crystals after femtosecond (fs) laser irradiation are investigated using a microscopic pump-probe technique and an elastic simulation. The pump-probe imaging shows that a squircle-shaped stress wave is generated after the fs laser irradiation as a result of the relaxation of thermal stress in the photoexcited region. Pump-probe crossed-Nicols imaging and elastic simulation elucidate that shear stresses and tensile stresses are concentrated in specific regions during the propagation of the stress wave. The shear stresses and tensile stresses observed in this study can explain the characteristic laser-induced structural changes inside rock-salt crystals.
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