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Efficient second-harmonic generation by scattering from porous gallium phosphide

机译:通过多孔磷化镓的散射有效产生二次谐波

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We experimentally study second-harmonic generation by femtosecond Cr: forsterite-laser radiation scattered on the surface of porous gallium phosphide with characteristic pore sizes and distances between the pores comparable with the second-harmonic wavelength. The intensity of the second-harmonic signal from samples with initial crystallographic surface orientations (110) and (111) is more than an order of magnitude higher than the intensity of the second harmonic generated in reflection from single-crystal gallium phosphide. The efficiency of second-harmonic generation by macroporous gallium phosphide substantially increases as the pump wavelength becomes shorter. The influence of light localization and scattering effects on the enhancement of second-harmonic generation and polarization properties of the second-harmonic is discussed. (C) 2003 MAIK "Nauka / Interperiodica". [References: 19]
机译:我们通过实验研究飞秒Cr产生的二次谐波:Cr镁橄榄石-激光辐射散布在多孔磷化镓表面,其特征孔径和孔之间的距离与二次谐波波长相当。来自具有初始晶体学表面取向(110)和(111)的样品的二次谐波信号的强度比由单晶磷化镓反射产生的二次谐波的强度高一个数量级。随着泵浦波长变短,大孔磷化镓产生二次谐波的效率大大提高。讨论了光的局域化和散射效应对增强二次谐波产生和偏振特性的影响。 (C)2003 MAIK“ Nauka / Interperiodica”。 [参考:19]

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