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Beamed Energy Propulsion : Optical Phase Noise in Fiber links and 1064 nm Fiber Amplifiers

机译:光束能量推进:光纤链路中的光学相位噪声和1064nm光纤放大器

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Effective transfer of beamed optical energy to a spacecraft requires that the source have a sufficiently small angular divergence to contain the beam within the area of the spacecraft collector. Such a directed energy system could be achieved by coherently combining many small optical sources distributed throughout a largescale array. The fundamental unit of such a system is a master oscillator power amplifier (MOPA) which consists of a frequency stabilized laser source distributed to amplifier trees in the array. A fundamental challenge in long baseline coherent beam combination is that each source be combined with sub-wavelength accuracy over the entire array. In addition to perturbations due to mechanical and atmospheric disturbances, phase noise introduced by the amplifiers and the seed distribution network must also be accounted for in order to achieve the necessary accuracy. This work investigates the excess phase noise introduced by the amplifier stages and fiber optic links. Locking schemes that could be used to synchronize such an array are presented. The test bed used to interrogate phase noise is based on an all polarization maintaining fiber Mach-Zehnder interferometer (MZI), controlled by an FPGA based digital quadrature detection at a sampling rate of 1 MS/s yielding direct measurement of amplitude and phase with servo control for phase locking. Results for various MOPA and fiber link configurations based on Yb-doped fiber amplifiers operating at 1064 nm and kilometer scale link lengths are presented.
机译:将光束光能与航天器的有效转移要求源具有足够小的角度发散,以容纳在航天器收集器的区域内的梁。通过相对地组合在庞大的阵列中的许多小光源相结合来实现这种定向的能量系统。这种系统的基本单元是主振荡器功率放大器(MOPA),其由分布到阵列中的放大器树的频率稳定激光源组成。长基线相干光束组合中的一个根本挑战是每个源在整个阵列上与子波长精度组合。除了由于机械和大气干扰引起的扰动之外,还必须考虑由放大器和种子分布网络引入的相位噪声以实现必要的准确性。该工作调查了放大器级和光纤链路引入的过量相位噪声。呈现可用于同步这种数组的锁定方案。用于询问相位噪声的试验台基于所有偏振维持光纤Mach Zehnder干涉仪(MZI),其由基于FPGA的数字正交检测以1 ms / s的采样率,产生直接测量振幅和伺服的相位控制锁相。介绍了各种MOPA和光纤链路配置,基于在1064nm和公里柱级连杆长度下操作的YB掺杂光纤放大器。

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