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首页> 外文期刊>CrystEngComm >Electro-optic crystals grown in confined geometry with optimal crystal characteristics for THz photonic applications
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Electro-optic crystals grown in confined geometry with optimal crystal characteristics for THz photonic applications

机译:以有限的几何形状生长的电光晶体,具有用于THz光子应用的最佳晶体特性

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摘要

We report a new crystal engineering technique for the thickness-controlled growth of large-area organic electro-optic crystals in confined geometry optimal for THz wave photonics. We investigate the relationship between the material properties and THz generation characteristics to determine the optimal crystal characteristics for THz applications. Two different state-of-the-art nonlinear optical organic crystals are chosen as model crystals, ionic quinolinium-based and non-ionic polyene-based crystals. Both kinds of electro-optic crystals grown in confined geometry exhibit good optical quality, large area and sub-millimeter-scale thickness, which are optimal crystal characteristics for efficient THz wave generation. In order to investigate the relationship between crystal characteristics and optical-to-THz conversion characteristics, THz experiments with quinolinium crystals are performed and compared with theoretical calculations. The characteristics of the generated THz waves from as-grown quinolinium-based single crystals in confined geometry match well with those from very flat quinolinium crystals prepared from bulk crystals by a cutting method and also with theoretical calculations.
机译:我们报告了一种新的晶体工程技术,用于在THz波光子学最佳的有限几何形状中控制大面积有机电晶体的厚度受控生长。我们研究了材料特性与太赫兹产生特性之间的关系,以确定太赫兹应用的最佳晶体特性。选择两种不同的最新非线性光学有机晶体作为模型晶体,分别是基于离子喹啉鎓的晶体和基于非离子多烯的晶体。两种以受限几何形状生长的电光晶体都具有良好的光学质量,大面积和亚毫米级的厚度,这是有效产生THz波的最佳晶体特性。为了研究晶体特性和光-THz转换特性之间的关系,对喹啉晶体进行了THz实验,并将其与理论计算进行了比较。刚生长的喹啉基单晶在有限的几何形状下产生的THz波的特性与通过切割方法以及理论计算由块状晶体制备的非常平坦的喹啉鎓晶体的特性非常吻合。

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