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Tunable Nonlinear Optical Property of MnS Nanoparticles with Different Size and Crystal Form

机译:不同尺寸和晶型的MnS纳米粒子的可调非线性光学性质

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摘要

It is significant to study the reason that semiconductor material has adjustable third-order optical nonlinearity through crystal form and dimensions are changed. αMnS nanoparticles with different crystal forms and sizes were successfully prepared by one-step hydrothermal synthesis method and their size-limited third-order nonlinear optical property was tested by Z-scan technique with 30 ps laser pulses at 532 nm wavelength. Nanoparticles of different crystal forms exhibited different NLO (nonlinear optical) responses. γMnS had stronger NLO response than αMnS because of higher fluorescence quantum yield. Two-photon absorption and the nonlinear refraction are enhanced as size of nanoparticlesreduced. The nanoparticles had maximum NLO susceptibility which was 3.09 × 10 esu. Susceptibility of αMnS increased about nine times than that of largest nanoparticles. However, it was reduced when size was further decreased. This trend was explained by the effects of light induced dipole moments. And defects in αMnS nanoparticles also had effect on this nonlinear process. MnS nanoparticles had potential application value in optical limiting and optical modulation.
机译:研究半导体材料通过晶形和尺寸变化而具有可调节的三阶光学非线性的原因具有重要意义。通过一步水热合成法成功制备了不同晶型和尺寸的αMnS纳米粒子,并通过Z扫描技术在532 nm波长下以30 ps的激光脉冲测试了尺寸受限的三阶非线性光学性质。不同晶体形式的纳米颗粒表现出不同的NLO(非线性光学)响应。由于较高的荧光量子产率,γMnS比αMnS具有更强的NLO响应。随着纳米粒子的尺寸减小,双光子吸收和非线性折射增强。纳米颗粒的最大NLO敏感性为3.09×10 esu。 αMnS的磁化率比最大纳米粒子的磁化率提高了约九倍。但是,当尺寸进一步减小时,它减小了。这种趋势可以通过光感应偶极矩的影响来解释。 αMnS纳米颗粒中的缺陷也对该非线性过程有影响。 MnS纳米粒子在光学限制和光学调制方面具有潜在的应用价值。

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