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首页> 外文期刊>International Journal of Nanotechnology >Generation of a phase contrast Talbot array illuminator with electric controlling
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Generation of a phase contrast Talbot array illuminator with electric controlling

机译:具有电子控制的相衬Talbot阵列照明器的产生

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摘要

A hexagonal phase contrast Talbot array illuminator based on an electro-optically tunable phase grating made from periodically poled Mg-doped LiNbO3 crystal is presented theoretically and experimentally. Both the effects from external electric field and diffraction distance on the intensity distribution of diffraction field are demonstrated by numerical simulation. The simulated results show that higher light compression ratio (LCR) in a hexagonal sample area can be achieved at a suitable diffraction distance under lower electric field. The experimental Talbot diffraction imaging was successfully obtained by modulating phase difference and fractional Talbot distance, and the intensity distribution agrees with the simulated results well. For the hexagonal phase contrast array illuminator with duty cycle of 63%, the highest LCR of 4.2 units can be obtained under phase difference of 0.80 p and diffraction position of 0.38 times Talbot distance.
机译:从理论上和实验上介绍了一种基于电光可调谐相位光栅的六边形相衬Talbot阵列照明器,该光栅由周期极化的掺Mg的LiNbO3晶体制成。数值模拟证明了外部电场和衍射距离对衍射场强度分布的影响。仿真结果表明,在较低的电场下,以合适的衍射距离可以实现六边形样品区域内较高的光压缩比(LCR)。通过调制相位差和分数塔尔伯特距离成功获得了实验塔尔伯特衍射成像,其强度分布与模拟结果吻合良好。对于占空比为63%的六边形相衬阵列照明器,在0.80 p的相差和0.38倍Talbot距离的衍射位置下,可以获得4.2个单位的最高LCR。

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