Publication | Open Access
Studies on transmitted beam modulation effect from laser induced damage on fused silica optics
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Citations
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References
2013
Year
PhotonicsLaser OpticsOptical MaterialsEngineeringLaser ScienceOptical Transmission SystemOptical PropertiesFused SilicaMechanical EngineeringApplied PhysicsLaser ApplicationsLaser-induced BreakdownFused Silica OpticsUv LaserLaser-based SensorExit SurfaceLaser Damage
UV laser induced damage (LID) on exit surface of fused silica could cause modulation effect to transmitted beam and further influence downstream propagation properties. This paper presents our experimental and analytical studies on this topic. In experiment, a series of measurement instruments are applied, including beam profiler, interferometer, microscope, and optical coherent tomography (OCT). Creating and characterizing of LID on fused silica sample have been implemented. Morphological features are studied based on their particular modulation effects on transmitted beam. In theoretical investigation, analytical modeling and numerical simulation are performed. Modulation effects from amplitude, phase, and size factors are analyzed respectively. Furthermore, we have novelly designed a simplified polygon model to simulate actual damage site with multiform modulation features, and the simulation results demonstrate that the modeling is usable and representative.
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