Gatt P, Costello T P, Heimmermann D A, Castellanos D C, Weeks A R, Stickley C M
Appl Opt. 1996 Oct 20;35(30):5999-6009. doi: 10.1364/AO.35.005999.
A description is given of the design, operation, and test over a 2-km path (roundtrip) of a continuous wave, coherent laser array receiver that uses two independent aperture-receivers whose intermediate frequencies are electro-optically co-phased in real time and then added as a proposed way to overcome effective aperture limitations imposed by atmospheric turbulence and to mitigate signal fading associated with atmospheric turbulence and speckle effects. The experiment resulted in a mean carrier-to-noise ratio increase of 1.8, which is within 1% of the theoretical predictions, when the two signals were phase locked, versus no increase without phase locking. Further, the carrier fading strength, or normalized carrier-to-noise ratio variance, was reduced by a factor of 0.53, which is within 2% of the theoretical prediction. The bandwidth of the electro-optic phase-locked loop was measured to be of the order of 600 Hz, which is adequate to compensate for atmospheric refractive turbulence fluctuations.
本文描述了一种连续波相干激光阵列接收器的设计、操作及其在2公里路径(往返)上的测试情况。该接收器使用两个独立的孔径接收器,其中频通过电光实时同相,然后相加,这是一种克服大气湍流所造成的有效孔径限制以及减轻与大气湍流和散斑效应相关的信号衰落的方法。实验结果表明,当两个信号锁相时,平均载噪比提高了1.8,这与理论预测值相差不到1%;而未锁相时则没有提高。此外,载波衰落强度(即归一化载噪比方差)降低了0.53倍,这与理论预测值相差不到2%。测得电光锁相环的带宽约为600赫兹,足以补偿大气折射湍流波动。