Crabtree Peter, Woods Charles L, Khoury Jed, Goda Matthew
Space Vehicles Directorate, U.S. Air Force Research Laboratory, 29 Randolph Road, Hanscom Air Force Base, MA 01731, USA.
Appl Opt. 2007 Dec 1;46(34):8335-45. doi: 10.1364/ao.46.008335.
Binary wavefront control in the focal plane (i.e., binary phase-only filtering) for partial compensation of atmospheric turbulence in fiber-coupled free-space laser communication systems is investigated. Numerical results from wave-optics simulations show that in an air-to-air scenario, the combination of binary phase-only filtering and centroid tracking provides mean fiber coupling efficiency close to that resulting from ideal least-squares adaptive optics, but without the requirement for direct wavefront sensing. This result suggests a simpler and less computationally demanding turbulence mitigation system that is more readily applied to tactical applications.
研究了在光纤耦合自由空间激光通信系统中,用于部分补偿大气湍流的焦平面二元波前控制(即二元纯相位滤波)。波动光学模拟的数值结果表明,在空对空场景中,二元纯相位滤波与质心跟踪相结合可提供接近理想最小二乘自适应光学所产生的平均光纤耦合效率,但无需直接波前传感。这一结果表明了一种更简单且计算要求更低的湍流缓解系统,该系统更易于应用于战术应用。