首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Power-scalable phase-compensating fiber-array transceiver for laser communications through the atmosphere
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Power-scalable phase-compensating fiber-array transceiver for laser communications through the atmosphere

机译:可功率缩放的相位补偿光纤阵列收发器,用于通过大气进行激光通信

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摘要

We report laboratory experiments demonstrating a phase-compensating 70-mm-diameter aperture transceiver that comprises a hexagonally close-packed array of seven 23-mm-diameter fiber collimator subapertures. Other than the collimators, the transceiver uses only fiber optics, connected as a master oscillator-multiple amplifier. The master oscillator is a fiber-coupled 1.5-mum diode laser, which is split and fed to 1-W fiber amplifiers before it exits the collimators. To obtain a phase-coherent far field we control each subaperture's phase by adjusting the current to its amplifier's pump diodes in a multidither arrangement, maximizing the signal at the receiver. We achieve a diffraction-limited coherent beam combination in the far field that produces 1.4 W of power in the main lobe, in agreement with theory. (C) 2005 Optical Society of America.
机译:我们报告的实验室实验演示了一个相位补偿的70毫米直径孔径收发器,该收发器包括七个23毫米直径光纤准直器子孔径的六边形密排阵列。除准直仪外,收发器仅使用光纤作为主振荡器-倍增放大器连接。主振荡器是一个与光纤耦合的1.5微米二极管激光器,在离开准直仪之前,将其分裂并馈入1-W光纤放大器。为了获得相位相干的远场,我们通过以多抖动方式调整流向其放大器的泵浦二极管的电流来控制每个子孔径的相位,从而使接收器处的信号最大化。与理论一致,我们在远场中实现了衍射受限的相干光束组合,在主瓣中产生了1.4 W的功率。 (C)2005年美国眼镜学会。

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