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Microcrystalline Bi2ZnB2O7-polymer composites with silver nanoparticles as materials for laser operated devices

机译:微晶Bi2ZnB2O7 - 聚合物复合材料与银纳米粒子

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摘要

A novel type of composite for optoelectronic which is operated by second harmonic generation in the Bi2ZnB2O7 crystallites (with sizes varying within 1–30 μm) and Ag nanoparticles (NP) embedded in PMMA polymer composites is proposed. The substantial influence of the Ag NP on the bicolor induced second harmonic generation was established. The phototreatment was performed by bicolor beams of nanosecond Nd:YAG laser (1,064/532 nm) at angles between the fundamental and photoinducing beams varying within the 19°–21° range. The studies of the corresponding dependences of the SHG during illumination by the two coherent beams at 1,064/532 nm showed a maximal enhancement of the output SHG for the Ag NP average sizes equal to about 40 nm. The role of the excited plasmons may be here crucial. Additionally the time shift between the fundamental and the doubled frequency beam maxima was found, which shows strong sensitivity to illumination. The established time shift is sensitive to the pumping power.
机译:提出了一种新型的光电复合材料,其通过在Bi2ZnB2O7微晶(尺寸在1–30μm之间变化)和嵌入在PMMA聚合物复合材料中的Ag纳米颗粒中产生二次谐波来运行。建立了Ag NP对双色诱导的二次谐波产生的实质影响。纳秒级Nd:YAG激光(1,064 / 532 nm)的双色光束以在19°–21°范围内变化的基本光束和光诱导光束之间的角度进行光处理。对在1,064 / 532nm处的两个相干光束照射期间SHG的相应依赖性的研究表明,对于Ag NP平均尺寸等于约40nm的输出SHG的最大增强。激发等离子体激元的作用在这里可能至关重要。此外,还发现了基波最大值和倍频最大值之间的时移,这显示出对照明的强烈敏感性。建立的时间偏移对泵浦功率敏感。

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