Cite this article:
Ouyang Qiu-Yun, Zhang Xue-Ru, Jiang Li, Chang Qing, Wang Yu-Xiao, Song Ying-Lin. Nonlinear optical properties in double-sided nonlinear media with Z-scan technique based on the Huygens--Fresnel principleJ. Chin. Phys. B, 2006, 15(8): 1810-1814.
| Ouyang Qiu-Yun, Zhang Xue-Ru, Jiang Li, Chang Qing, Wang Yu-Xiao, Song Ying-Lin. Nonlinear optical properties in double-sided nonlinear media with Z-scan technique based on the Huygens--Fresnel principleJ. Chin. Phys. B, 2006, 15(8): 1810-1814. |
Nonlinear optical properties in double-sided nonlinear media with Z-scan technique based on the Huygens--Fresnel principle
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Abstract
We present a theoretical model to analyse the propagation of a Gaussian laser beam through double-sided nonlinear media. This model is based on the Huygens--Fresnel diffraction integral method. This theoretical model is not only consistent with the cascade structure model for a small nonlinear phase-shift but also can be used for a large nonlinear phase-shift. It has been verified that it is suitable to characterize the double-sided nonlinear media compared with the cascade structure model. A good agreement between the experimental data and the results from the theoretical model is obtained. It will be useful for the design of multi-sided nonlinear materials. -
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