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Image revivals in multi-mode optical fibers with periodic multiple sub-apertures

机译:具有周期性多个子孔径的多模光纤中的图像恢复

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摘要

We report experiments on a multi-mode fiber-based device that reimages the input pattern after specific propagation distances. The reimaging has two propagation length scales related to the Talbot self-imaging in a periodic grating and image revival effects. We use a beam propagation method to simulate diffraction and refraction of light in the optical fiber. The details of the fiber preparation and optical experiments are described. We study the optical imaging properties using a close-packed array of sub-apertures placed at regular positions on a triangular lattice. We numerically analyze the propagation, diffraction and coupling characteristics of the beam oscillating inside the fiber. Our simulations identify the optimal reimaging length of the multi-mode (MM) fiber to get high fidelity image revival. Experiments are performed to validate the simulation results.
机译:我们报告了基于多模光纤的设备的实验,该设备在特定的传播距离后对输入模式进行了重新成像。重新成像具有两个与周期性光栅中Talbot自成像有关的传播长度标度和图像恢复效果。我们使用光束传播方法来模拟光纤中光的衍射和折射。描述了纤维制备和光学实验的细节。我们使用排列在三角晶格上常规位置的子孔径的密集阵列研究光学成像特性。我们数值分析了在光纤内部振荡的光束的传播,衍射和耦合特性。我们的仿真确定了多模(MM)光纤的最佳重新成像长度,以实现高保真度的图像恢复。进行实验以验证仿真结果。

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