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Recent developments in transparent organics for second- and third-order nonlinear optics

机译:用于二阶和三阶非线性光学的透明有机物的最新进展

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Organic materials have been a focus of new nonlinear optical (NLO) materials development efforts in the late 1980s and early 1990s as a result of their often large second and third order optical nonlinearities and inherent chemical design flexibility. However, implementation of single crystal organic materials in practical device applications has been impeded by their often inadequate transparency, poor optical quality, lack of robustness, low laser damage threshold, and inability to grow in large-size crystals. The molecules in pure organic crystals are often coupled only by relatively weak van der Waals forces or hydrogen bonding which results in mediocre mechanical properties. Even for very promising and well characterized organic second harmonic generation (SHG) materials, large scale growth is often difficult, and quality can be compromised due to solvent impurity incorporation during crystallization.
机译:由于有机材料通常具有较大的二阶和三阶光学非线性和固有的化学设计灵活性,因此在1980年代末和1990年代初一直是新的非线性光学(NLO)材料开发工作的重点。然而,单晶有机材料在实际设备应用中的实施由于其通常不足够的透明性,不良的光学质量,缺乏坚固性,低的激光损伤阈值以及不能在大尺寸晶体中生长而受到阻碍。纯有机晶体中的分子通常仅通过相对较弱的范德华力或氢键结合,从而导致中等的机械性能。即使对于非常有前途且特征明确的有机二次谐波(SHG)材料,通常也难以大规模生长,并且由于结晶过程中溶剂杂质的掺入,质量也会受到损害。

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