Molecular alignment-assisted spectral broadening and shifting in the near-infrared with a recycled depleted pump from an optical parametric amplifier

We demonstrate how the depleted pump of an optical parametric amplifier can be recycled for impulsive alignment of a molecular gas inside a hollow-core fiber and use such alignment for the broadening and frequency shift of the signal pulse at a center wavelength of ∼1300 nm. Our results combine non-...

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Bibliographic Details
Published inOptics express Vol. 31; no. 25; pp. 42327 - 42337
Main Authors Rodnova, Zhanna, Saule, Tobias, Gibson, George, Trallero-Herrero, Carlos A
Format Journal Article
LanguageEnglish
Published United States 04.12.2023
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Summary:We demonstrate how the depleted pump of an optical parametric amplifier can be recycled for impulsive alignment of a molecular gas inside a hollow-core fiber and use such alignment for the broadening and frequency shift of the signal pulse at a center wavelength of ∼1300 nm. Our results combine non-adiabatic molecular alignment, self-phase modulation, and Raman non-linearities. We demonstrate spectral shifts of up to 204 nm and a spectral broadening of more than one octave. We also report on the time delays at which broadening occurs, which do not coincide with any of the molecular rotational constants. Further, we encounter that maximum frequency shifts occur when the signal and pump have perpendicular polarization instead of parallel.
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ISSN:1094-4087
1094-4087
DOI:10.1364/OE.502346