Applied Physics Letters · 2012 · 13 citations · 11 references
Optical MaterialsEngineeringOptical GlassLaser ApplicationsGlass MaterialHigh-power LasersPotassium-magnesium Silicate GlassesGlass-ceramicOptical PropertiesMaterials SciencePhysicsX-ray AbsorptionAlkaline Silicate GlassesStructural ChangesApplied PhysicsGlass PhotonicsFemtosecond Laser-induced ModificationLaser-surface InteractionsGlass Structure
The effects of femtosecond laser pulse irradiation on the glass structure of alkaline silicate glasses were investigated by x-ray absorption near edge structure spectroscopy using the beamline of the Physikalisch-Technische Bundesanstalt at the electron synchrotron BESSY II in Berlin (Germany) by analyzing the magnesium K-edge absorption peak for different laser fluences. The application of fluences above the material modification threshold (2.1 J/cm2) leads to a characteristic shift of ∼1.0 eV in the K-edge revealing a reduced (∼3%) mean magnesium bond length to the ligated oxygen ions (Mg-O) along with a reduced average coordination number of the Mg ions.
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Simple technique for measurements of pulsed Gaussian-beam spot sizes
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