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Ad-hoc design of temporally shaped fs laser pulses based on plasma dynamics for deep ablation in fused silica
Authors:J Hernandez-Rueda  J Siegel  D Puerto  M Galvan-Sosa  W Gawelda  J Solis
Institution:1. Laser Processing Group, Instituto de óptica, C.S.I.C., Serrano 121, 28006, Madrid, Spain
2. Centro de Tecnología Nanofotónica, Universidad Politécnica de Valencia, Edificio 8B, Camino de Vera s/n., 46022, Valencia, Spain
3. European XFEL GmbH, Albert-Einstein-Ring 19, 2276, Hamburg, Germany
Abstract:We have analyzed the ablation depth yield of fused silica irradiated with shaped pulse trains with a separation of 500 fs and increasing or decreasing intensity envelopes. This temporal separation value is extracted from previous studies on ablation dynamics upon irradiation with transform-limited 100 fs laser pulses. The use of decreasing intensity pulse trains leads to a strong increase of the induced ablation depth when compared to the behavior, at the same pulse fluence, of intensity increasing pulse trains. In addition, we have studied the material response under stretched (500 fs, FWHM) and transform-limited (100 fs, FWHM) pulses, for which avalanche or multiphoton ionization respectively dominates the carrier generation process. The comparison of the corresponding evolution of the ablated depth vs. fluence suggests that the use of pulse trains with decreasing intensity at high fluences should lead to enhanced single exposure ablation depths, beyond the limits corresponding to MPI- or AI-alone dominated processes.
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