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Formation of the domain structure in CLN under the pyroelectric field induced by pulse infrared laser heating

机译:脉冲红外激光加热引起的热电场在CLN中畴结构的形成

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The evolution of the self-assembled quasi-regular micro- and nanodomain structures after pulse infrared laser irradiation in congruent lithium niobate crystal was studied by in situ optical observation. Several scenarios of domain kinetics represented covering of the irradiated zone by nets of the separated domain chains and rays have been revealed. The time dependence of the total domain length was analyzed in terms of modified Kolmogorov-Avrami theory. The domain structure evolution was attributed to the action of pyroelectric field appeared during cooling. The time dependence of the spatial distribution of the pyroelectric field during pulse laser heating and subsequent cooling was calculated by finite element method. The results of computer simulation allowed us to explain the experimental results and can be used for creation of tailored domain structures thus opening the new abilities of the submicron-scale domain engineering in ferroelectrics.
机译:通过原位光学观察研究了脉冲红外激光辐照全铌酸锂晶体后自组装准规则的微域和纳米域结构的演化。已经揭示了域动力学的几种情形,这些情形代表了由分离的域链和射线网覆盖的辐照区。根据改进的Kolmogorov-Avrami理论分析了总域长度的时间依赖性。畴结构的演化归因于冷却过程中出现的热电场的作用。利用有限元方法计算了脉冲激光加热及随后冷却过程中热电场空间分布的时间依赖性。计算机仿真的结果使我们能够解释实验结果,并可用于创建定制的畴结构,从而开启了铁电学中亚微米级畴工程的新功能。

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