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Visible light nonlinear absorption and optical limiting of ultrathin ZrSe nanoflakes. | LitMetric

Visible light nonlinear absorption and optical limiting of ultrathin ZrSe nanoflakes.

Nanotechnology

Key Laboratory of Mesoscopic Chemistry of MOE, and State Key Laboratory of Coordination Chemistry, and School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, People's Republic of China.

Published: November 2016

The nonlinear absorption and nonlinear refractive properties of ZrSe nanoflakes were studied with a 6.5 ns pulse laser at 532 nm. Open-aperture Z-scan curves reveal that ZrSe nanoflakes have a strong reverse saturable absorption property, and close-aperture Z-scan curves show that ZrSe dispersions possess a positive nonlinear refractive index caused by self-focusing. The nonlinear absorption coefficient, the nonlinear refraction coefficient, and the figures of merit (FOM) of ZrSe dispersed in water with linear transmittances of 0.86 at input energy of 18 μJ are 6.35 × 10 m W 15.73 × 10 m W, and 10.09 × 10 esu · cm respectively. In addition, nonlinear optical (NLO) performance of ZrSe nanoflakes depends on organic solvent dispersions. ZrSe nanoflakes in water dispersions have the largest FOM of 10.27 × 10 esu · cm, while the FOM in ethanol dispersions is 5.41 × 10 esu · cm at the same input energy of 26.5 μJ. The optical limiting threshold F of ZrSe nanosheet is 2.2 J cm under picosecond laser pulse. The Results imply that ZrSe nanoflakes are an extraordinarily promising material for novel nanophotonic devices like optical limiters.

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Source
http://dx.doi.org/10.1088/0957-4484/27/46/465203DOI Listing

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