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    Título
    Nonlinear post-compression in multi-pass cells in the mid-IR region using bulk materials
    Autor(es)
    Carlson, D.
    Tanksalvala, M.
    Morrill, D.
    San Román Álvarez de Lara, JulioUSAL authority ORCID
    Conejero Jarque, EnriqueUSAL authority ORCID
    Kapteyn, Henry C.
    Murnane, Margaret M.
    Hemmer, M.
    Palabras clave
    Four wave mixing
    High harmonic generation
    Nonlinear effects
    Pulse compression
    Pulse propagation
    Soft x rays
    Fecha de publicación
    2022-10
    Citación
    D. Carlson, M. Tanksalvala, D. Morrill, J. San Roman, E. Conejero Jarque, H. C. Kapteyn, M. M. Murnane, and M. Hemmer, "Nonlinear post-compression in multi-pass cells in the mid-IR region using bulk materials," Opt. Lett. 47, 5289-5292 (2022) https://opg.optica.org/ol/abstract.cfm?URI=ol-47-20-5289
    Resumen
    We numerically investigate the regime of nonlinear pulse compression at mid-IR wavelengths in a multi-pass cell (MPC) containing a dielectric plate. This post-compression setup allows for ionization-free spectral broadening and self-compression while mitigating self-focusing effects. We find that self-compression occurs for a wide range of MPC and pulse parameters and derive scaling rules that enable its optimization. We also reveal the solitonic dynamics of the pulse propagation in the MPC and its limitations and show that spatiotemporal/spectral couplings can be mitigated for appropriately chosen parameters. In addition, we reveal the formation of spectral features akin to quasi-phase matched degenerate four-wave mixing. Finally, we present two case studies of self-compression at 3-μm and 6-μm wavelengths using pulse parameters compatible with driving high-field physics experiments. The simulations presented in this paper set a framework for future experimental work using few-cycle pulses at mid-IR wavelengths.
    URI
    https://hdl.handle.net/10366/150728
    ISSN
    0146-9592
    DOI
    10.1364/OL.471458
    Versión del editor
    https://doi.org/10.1364/OL.471458
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