Abstract
Gallium phosphide (GaP) is one of the few available materials with strong optical nonlinearity and negligible losses in the visible (l > 450 nm) and near-infrared regime. In this work, we demonstrate that a GaP film can generate sub–30-fs (full width at half maximum) transmission modulation of up to ~70% in the 600- to 1000-nm wavelength range. Nonlinear simulations using parameters measured by the Z-scan approach indicate that the transmission modulation arises from the optical Kerr effect and two-photon absorption. Because of the absence of linear absorption, no slower free-carrier contribution is detected. These findings place GaP as a promising ultrafast material for all-optical switching at modulation speeds of up to 20 THz.
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CITATION STYLE
Grinblat, G., Nielsen, M. P., Dichtl, P., Li, Y., Oulton, R. F., & Maier, S. A. (2019). Ultrafast sub–30-fs all-optical switching based on gallium phosphide. Science Advances, 5(6). https://doi.org/10.1126/sciadv.aaw3262
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