噻吩基腙:一类新的非线性光学分子晶体

C. Bosshard, Pan Feng, M. Wong, M. Bösch, U. Meier, P. Günter
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引用次数: 0

摘要

由于晶体固体具有优异的长期定向稳定性和极高的有效成分密度,因此通常被认为是实际应用于光频率转换器的最佳材料形式。这种材料可以与廉价的二极管激光器相结合,产生宽范围的光频率[1,2]。我们在此报告了我们正在进行的基于腙衍生物5-(甲基硫)-噻吩-4-硝基苯基腙(MTTNPH)和5-硝基-2-噻吩-羧醛-4-甲基苯基腙(NTMPH)的新型高效二阶非线性光学晶体材料的研发工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thiophene Based Hydrazones: a New Class of Nonlinear Optical Molecular Crystals
Crystalline solids are often regarded as the best choice of material form for practical use as optical frequency converters because of the excellent long-term orientational stability and extremely high density of active components. Such materials can be combined with inexpensive diode lasers for optic parametric generation of a broad range of optical frequencies [1, 2]. We here report on our on-going efforts in the development of novel and highly efficient second-order nonlinear optical crystalline materials for frequency conversion, based on the hydrazone derivatives 5-(methylthio)-thiophenecarboxaldehyde-4-nitrophenylhydrazone (MTTNPH) and 5-nitro-2-thiophene-carboxaldehyde-4-methylphenylhydrazone (NTMPH).
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