Brown David M, Juarez Juan C, Brown Andrea M
Appl Opt. 2013 Dec 1;52(34):8402-10. doi: 10.1364/AO.52.008402.
A laser differential image-motion monitor (DIMM) system was designed and constructed as part of a turbulence characterization suite during the DARPA free-space optical experimental network experiment (FOENEX) program. The developed link measurement system measures the atmospheric coherence length (r0), atmospheric scintillation, and power in the bucket for the 1550 nm band. DIMM measurements are made with two separate apertures coupled to a single InGaAs camera. The angle of arrival (AoA) for the wavefront at each aperture can be calculated based on focal spot movements imaged by the camera. By utilizing a single camera for the simultaneous measurement of the focal spots, the correlation of the variance in the AoA allows a straightforward computation of r0 as in traditional DIMM systems. Standard measurements of scintillation and power in the bucket are made with the same apertures by redirecting a percentage of the incoming signals to InGaAs detectors integrated with logarithmic amplifiers for high sensitivity and high dynamic range. By leveraging two, small apertures, the instrument forms a small size and weight configuration for mounting to actively tracking laser communication terminals for characterizing link performance.
作为美国国防高级研究计划局自由空间光学实验网络实验(FOENEX)项目中湍流特性套件的一部分,设计并构建了一种激光差分图像运动监测仪(DIMM)系统。所开发的链路测量系统可测量1550纳米波段的大气相干长度(r0)、大气闪烁和桶中功率。DIMM测量是通过与单个铟镓砷相机耦合的两个独立孔径进行的。每个孔径处波前的到达角(AoA)可根据相机成像的焦斑移动来计算。通过使用单个相机同时测量焦斑,到达角方差的相关性使得能够像传统DIMM系统那样直接计算r0。通过将一定比例的入射信号重定向到与对数放大器集成的铟镓砷探测器,利用相同的孔径进行闪烁和桶中功率的标准测量,以实现高灵敏度和高动态范围。通过利用两个小孔径,该仪器形成了小尺寸和轻重量的配置,可安装到主动跟踪激光通信终端上,以表征链路性能。