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Título
Scalable sub-cycle pulse generation by soliton self-compression in hollow capillary fibers with a decreasing pressure gradient
Autor(es)
Palabras clave
Ultrafast nonlinear optics
Hollow capillary fibers
Soliton-self compression
Sub-cycle pulses
Fecha de publicación
2023-04
Citación
Fernández Galán, Marina. Conejero Jarque, Enrique. San Román Álvarez de Lara, Julio. 2023. «+Scalable sub-cycle pulse generation by soliton self-compression in hollow capillary fibers with a decreasing pressure gradient». J. Eur. Opt. Society-Rapid Publ. 19(1):15. doi: 10.1051/jeos/2023011.
Resumen
Advances in the generation of the shortest optical laser pulses down to the sub-cycle regime promise to break new ground in ultrafast science. In this work, we theoretically demonstrate the potential scaling capabilities of soliton self-compression in hollow capillary fibers with a decreasing pressure gradient to generate near-infrared sub-cycle pulses in very different dispersion and nonlinearity landscapes. Independently of input pulse, gas and fiber choices, we present a simple and general route to find the optimal self-compression parameters which result in high-quality pulses. The use of a decreasing pressure gradient naturally favors the self-compression process, resulting in shorter and cleaner sub-cycle pulses, and an improvement in the robustness of the setup when compared to the traditional constant pressure approach.
URI
DOI
10.1051/jeos/2023011
Versión del editor
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