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Modal effects on pump-pulse propagation in an Ar-filled capillary

Source: Opt. Express 18, 13279 (2010); doi:10.1364/OE.18.013279

Issue Date: August 2010

PACS
  • 42.15.-i
    Geometrical optics
  • 42.65.Re
    Ultrafast processes; optical pulse generation and pulse compression
  • YEAR: 2010
PUBLICATION DATA
ISSN:
1553-9601 (online)
Publisher:
AIP is a member of CrossRef OSA
Accurate three-dimensional modelling of nonlinear pulse propagation within a gas-filled capillary is essential for understanding and improving the XUV yield in high harmonic generation. We introduce both a new model based on a multimode generalized nonlinear Schrödinger equation and a novel spatio-spectral measurement technique to which the model can be compared. The theory shows excellent agreement with the measured output spectrum and the spatio-spectral measurement reveals that the model correctly predicts higher order mode contributions to spectral broadening of the pulse. Fluorescence from the excited argon is used to verify the predicted ion distribution along the capillary. ©2010 Optical Society of America

(As supplied by publisher.)

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