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Nonlinear transmittance and optical power limiting in magnesium ferrite nanoparticles: effects of laser pulsewidth and particle size

机译:镁铁氧体纳米粒子中的非线性透射率和光功率限制:激光脉冲宽度和粒径的影响

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摘要

We report comparative measurements of size dependent nonlinear transmission and optical power limiting in nanocrystalline magnesium ferrite (MgFe _(2) O _(4) ) particles excited by short (nanosecond) and ultrashort (femtosecond) laser pulses. A standard sol–gel technique is employed to synthesize particles in the size range of 10–50 nm, using polyvinyl alcohol as the chelating agent. The structure and morphology of the samples are studied using X-ray diffraction, scanning electron microscopy and transmission electron microscopy. Growth of the particles in time is tracked through Fourier transform infrared spectroscopy. Nonlinear transmission measurements have been carried out using the open aperture Z -scan technique employing 532 nm, 5 nanosecond pulses and 800 nm, 100 femtosecond pulses, respectively. The measured optical nonlinearity is primarily of a reverse saturable absorption (RSA) nature, arising mostly from excited state absorption for nanosecond excitation, and two-photon absorption for femtosecond excitation. The optical limiting efficiency is found to increase with particle size for both cases. The calculated nonlinear parameters indicate that these materials are potential candidates for optical limiting applications.
机译:我们报告了由短(纳秒)和超短(飞秒)激光脉冲激发的纳米晶镁铁素体(MgFe _(2)O _(4))颗粒中的尺寸相关非线性传输和光功率限制的比较测量。用聚乙烯醇作为螯合剂,使用标准溶胶 - 凝胶技术在10-50nm的尺寸范围内合成粒子。使用X射线衍射,扫描电子显微镜和透射电子显微镜研究样品的结构和形态。通过傅里叶变换红外光谱跟踪颗粒的生长。使用采用532nm,5纳秒和800nm,100飞秒脉冲的开口孔径z-scan技术进行了非线性透射测量。测量的光学非线性主要是具有反向可饱和的吸收(RSA)性质,主要来自激发的纳秒激发的激发态吸收,以及用于飞秒激发的两光子吸收。发现光学限制效率随两种情况的粒度增加。计算出的非线性参数表明这些材料是光学限制应用的潜在候选。

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