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Non-linear optical phenomena in the large-sized nanocrystallites

机译:大尺寸纳米微晶中的非线性光学现象

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Photoinduced second harmonic generation (PISHG) in SiC nanocrystallites (with sizes ranging from 10 to 30 nm) incorporated into an oligoetheracrylate photopolymer matrix was studied using an experimental photoinducing nonlinear optical technique and ab initio molecular dynamics simulations. PISHG measurements were made using a pulse YAG:Nd laser (gimel = 1.06 mum; duration time varying from 4 to 850 ps, laser power about 14 MW) as the probing beam and a nitrogen pulse laser (P = 25 MW; gimel = 0.377 mum) as the pumping beam synchronized with a probing beam. We found that with an increase in the nitrogen laser power, the PISHG output signal increased and achieved its maximum value at nitrogen laser photon flux of about 2.6 GW/cm(2). Maximum output PISHG signals were observed for parallel polarization of the photoinducing and probing light beams. The second order non-linear optical susceptibility observed at the maximum PISHG was about 1.2 pm/V. The PISHG signals increased as the sample temperature decreased. This increase became marked when the temperature fell below 30 K. Time-dependent probe-pump measurements showed the existence of a PISHG maximum at a time delay of about 20-25 ps. As a result of total energy structure optimization, a good correlation between the size dimensions and the degree of hexagonality within the nanocrystallites was observed. An increase in the degree of hexagonality was also found to cause an increase in the PISHG signal. At a temperature of about 4.2 K, and with a time delay of 25 ps, the maximum PISHG was observed for a degree of hexagonality of approximately 0.76. Our calculations suggest that hexagonal substructures play a key role in the photoinduced effects observed. Several discrepancies between theoretical and experimental data may be caused by specimen in-homogeneity which is usually present in such kinds of materials. ((C)) 2001 Elsevier Science B.V. All rights reserved. [References: 60]
机译:使用实验性光诱导非线性光学技术和从头算分子动力学模拟研究了掺入低聚醚丙烯酸酯光聚合物基质中的SiC纳米微晶(尺寸范围为10至30 nm)中的光诱导二次谐波生成(PISHG)。使用脉冲YAG:Nd激光(gimel = 1.06 mum;持续时间从4到850 ps,激光功率约14 MW)作为探测光束和氮气脉冲激光(P = 25 MW; gimel = 0.377)进行PISHG测量泵浦光束与探测光束同步)。我们发现,随着氮气激光功率的增加,PISHG输出信号增加,并在氮气激光光子通量约为2.6 GW / cm(2)时达到其最大值。对于光诱导和探测光束的平行偏振,观察到最大输出的PISHG信号。在最大PISHG处观察到的二阶非线性光学磁化率约为1.2 pm / V。 PISHG信号随着样品温度的降低而增加。当温度降至30 K以下时,这种增加变得明显。随时间变化的探针泵测量表明,在大约20-25 ps的时间延迟下存在PISHG最大值。作为总能量结构优化的结果,观察到纳米晶粒内的尺寸尺寸和六边形程度之间的良好相关性。还发现六角形度的增加引起PISHG信号的增加。在约4.2 K的温度和25 ps的时间延迟下,观察到最大PISHG的六角形度约为0.76。我们的计算表明,六角形亚结构在观察到的光致效应中起关键作用。理论和实验数据之间的一些差异可能是由这种材料中通常存在的样品不均匀性引起的。 ((C))2001 Elsevier Science B.V.保留所有权利。 [参考:60]

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