Abstract
We investigate the interpulse thermal interaction of a train of ultrashort laser pulses and develop a model to describe the isobaric heating of air by a train of pulses undergoing filamentation. We calculate the heating of air from a single laser pulse and the resulting refractive index perturbation encountered by subsequent pulses, and use this to simulate the propagation of a high-power pulse train. The simulations show deflection of laser filaments by the thermal refractive index consistent with previous experimental measurements.
Cite
CITATION STYLE
Isaacs, J., Hafizi, B., Johnson, L. A., Rosenthal, E. W., Mrini, L., & Peñano, J. (2022). Modeling the propagation of a high-average-power train of ultrashort laser pulses. Optics Express, 30(13), 22306. https://doi.org/10.1364/oe.443989
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