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首页> 外文期刊>Applied Sciences >Numerical Models for Exact Description of in-situ Digital In-Line Holography Experiments with Irregularly-Shaped Arbitrarily-Located Particles
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Numerical Models for Exact Description of in-situ Digital In-Line Holography Experiments with Irregularly-Shaped Arbitrarily-Located Particles

机译:不规则形状任意定位粒子的原位数字在线全息实验精确描述的数值模型

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摘要

We present the development of a numerical simulator for digital in-line holography applications. In-line holograms of arbitrarily shaped and arbitrarily located objects are calculated using generalized Huygens-Fresnel integrals. The objects are 2D opaque or phase objects. The optical set-up is described by its optical transfer matrix. A wide variety of optical systems, involving windows, spherical or cylindrical lenses, can thus be taken into account. It makes the simulator applicable for design and description of in situ experiments. We discuss future applications of this simulator for detection of nanoparticles in droplets, or calibration of airborne instruments that detect and measure ice crystals in the atmosphere.
机译:我们提出了用于数字在线全息应用的数值模拟器的开发。使用广义惠更斯-菲涅耳积分,可以计算出任意形状和任意位置的物体的线内全息图。对象是2D不透明或相位对象。光学装置由其光学传输矩阵描述。因此可以考虑多种光学系统,包括窗户,球面或柱面透镜。它使模拟器适用于原位实验的设计和描述。我们讨论了该模拟器在检测液滴中纳米颗粒或校准检测和测量大气中冰晶的机载仪器中的未来应用。

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