Modeling the propagation of a high-average-power train of ultrashort laser pulses

  • Isaacs J
  • Hafizi B
  • Johnson L
  • et al.
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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.

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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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