首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Maximum fiber coupling efficiency and optimum beam size in the presence of random angular jitter for free-space laser systems and their applications
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Maximum fiber coupling efficiency and optimum beam size in the presence of random angular jitter for free-space laser systems and their applications

机译:对于自由空间激光系统及其应用,在存在随机角抖动的情况下,最大的光纤耦合效率和最佳的光束尺寸

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摘要

Free-space laser communication systems use optical-fiber-based technology such as optical amplifiers, receivers, and high-speed modulators. In these systems using single-mode fibers, the fiber coupling efficiency is one of the most significant issues to be solved. Optimum relationships between a focused optical beam and mode field size of the optical fiber in the presence of random angular jitter are discussed in relation to fiber-coupled optical systems. Maximum fiber coupling efficiency is analytically derived with the optimum Airy disk radius normalized by the mode field radius as a function of random angular jitter. The fade level of fiber-coupled signals at desired fade probability is investigated. It is shown that the average bit error ratio significantly degrades with the random angular jitter normalized by the mode field radius larger than about 0.3 when the Airy disk size is optimally selected.
机译:自由空间激光通信系统使用基于光纤的技术,例如光放大器,接收器和高速调制器。在这些使用单模光纤的系统中,光纤耦合效率是要解决的最重要的问题之一。关于光纤耦合光学系统,讨论了在存在随机角抖动的情况下聚焦光束与光纤的模场大小之间的最佳关系。通过以模场半径归一化为随机角抖动的函数对最佳艾里斑半径进行分析,可以得出最大的光纤耦合效率。研究了光纤耦合信号在所需衰减概率下的衰减水平。结果表明,当最佳选择艾里斑块尺寸时,随着模式角半径大于约0.3归一化的随机角抖动,平均误码率会大大降低。

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