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Analysis of angular dispersion induced by wavefront rotation in nanosecond optical parametric chirped pulse amplification. | LitMetric

AI Article Synopsis

  • The study analyzes angular dispersion in a nanosecond optical parametric chirped-pulse amplification (ns-OPCPA) amplifier used in multi-PW laser systems.
  • It identifies wavefront rotation as a significant factor contributing to angular dispersion, overshadowing the effects of pulse front tilt.
  • Experimental validation of the theory was achieved through measurements taken from the ns-OPCPA frontend in a 20-fs, 4-PW Ti:Sapphire laser, highlighting the need to control angular dispersion to maintain focus intensity in ultrahigh power lasers.

Article Abstract

Angular dispersion observed in a nanosecond optical parametric chirped-pulse amplification (ns-OPCPA) amplifier adopted in the frontend of a multi-PW laser was analyzed. The theory on the angular dispersion, extended by including the wavefront rotation and the pulse front tilt of a strongly chirped laser pulse, revealed that the wavefront rotation is a major contributor to the angular dispersion, as compared to the pulse front tilt, in a ns-OPCPA amplifier. It was also shown that the wavefront rotation could be introduced by the phase mismatch and the noncollinear propagation angle in the noncollinear ns-OPCPA amplifier. The theoretical prediction was experimentally verified by measuring the angular dispersion of the ns-OPCPA frontend installed in the 20-fs, 4-PW Ti:Sapphire laser. We emphasize the importance of the proper characterization and control of the angular dispersion in the ns-OPCPA amplifier since the focus intensity of an ultrahigh power laser could be significantly reduced due to the spatiotemporal effect even for small induced angular dispersion.

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Source
http://dx.doi.org/10.1364/OE.411059DOI Listing

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