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首页> 外文期刊>RSC Advances >Key aspects of L-threoninium picrate single crystal: an excellent organic nonlinear optical material with a high laser-induced damage threshold
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Key aspects of L-threoninium picrate single crystal: an excellent organic nonlinear optical material with a high laser-induced damage threshold

机译:L- pic酸苦味single单晶的关键方面:一种优异的有机非线性光学材料,具有较高的激光诱导损伤阈值

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摘要

Recent trends focuses on the usage of nonlinear optical materials owing to their increasing demand in frontier areas of optical communication and switching applications. In the present work single crystal of L-threoninium picrate, an excellent material for nonlinear optical applications was grown using conventional slow evaporation solution technique to meet the increasing demand of photonics industry. The lattice parameters of the grown crystal were analysed by using powder X-ray diffraction, and it was found that it crystallised in monoclinic system with space group P2(1). The strain in the lattice of the grown crystal was calculated using Hall-Williamson relation. Crystalline perfection of the grown crystal was assessed using high resolution X-ray diffraction technique and observed that quality of crystal was fairly good. Optical transmission analysis and band gap evaluation were performed using UV-Vis spectroscopy. Laser damage threshold value for the crystal was also measured and was found to be higher than most of reported organic single crystals. Optical homogeneity of the crystal and birefringence was evaluated using modified channel spectrum method. Thermal behaviour of the grown specimen was examined by using photopyroelectric technique. Further its various mechanical properties, such as hardness, stiffness, young's modulus, were measured using nanoindentation technique.
机译:由于非线性光学材料在光学通信和交换应用的前沿领域中日益增长的需求,因此近来的趋势集中于非线性光学材料的使用。在目前的研究中,L- pic酸rate盐单晶使用常规的慢速蒸发溶液技术生长了一种用于非线性光学应用的优异材料,以满足对光子学行业日益增长的需求。利用粉末X射线衍射分析了生长晶体的晶格参数,发现其在具有空间群P2(1)的单斜晶系中结晶。使用Hall-Williamson关系式计算生长晶体的晶格应变。使用高分辨率X射线衍射技术评估了生长晶体的晶体完善性,并观察到晶体质量相当好。使用UV-Vis光谱法进行光透射分析和带隙评估。还测量了晶体的激光损伤阈值,发现该阈值高于大多数报道的有机单晶。使用改进的通道光谱法评估晶体的光学均匀性和双折射。通过使用光热电技术检查生长的样品的热行为。此外,使用纳米压痕技术测量了其各种机械性能,例如硬度,刚度,杨氏模量。

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