| Literature DB >> 30732318 |
Kevin Werner, Michael G Hastings, Aaron Schweinsberg, Brian L Wilmer, Drake Austin, Christopher M Wolfe, Miroslav Kolesik, Trenton R Ensley, Laura Vanderhoef, Anthony Valenzuela, Enam Chowdhury.
Abstract
Polycrystalline ZnSe is an exciting source of broadband supercontinuum and high-harmonic generation via random quasi phase matching, exhibiting broad transparency in the mid-infrared (0.5-20 μm). In this work, the effects of wavelength, pulse power, intensity, propagation length, and crystallinity on supercontinuum and high harmonic generation are investigated experimentally using ultrafast mid-infrared pulses. Observed harmonic conversion efficiency scales linearly in propagation length, reaching as high as 36%. For the first time to our knowledge, n2 is measured for mid-infrared wavelengths in ZnSe: n2(λ=3.9 μm)=(1.2±0.3)×10-14 cm2/W. Measured n2 is applied to simulations modeling high-harmonic generation in polycrystalline ZnSe as an effective medium.Entities:
Year: 2019 PMID: 30732318 DOI: 10.1364/OE.27.002867
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894