Nelson W, Palastro J P, Wu C, Davis C C
Opt Lett. 2016 Mar 15;41(6):1301-4. doi: 10.1364/OL.41.001301.
A laser beam propagating to a remote target through atmospheric turbulence acquires intensity fluctuations. If the target is cooperative and provides a coherent return beam, the phase measured near the beam transmitter and adaptive optics, in principle, can correct these fluctuations. Generally, however, the target is uncooperative. In this case, we show that an incoherent return from the target can be used instead. Using the principle of reciprocity, we derive a novel relation between the field at the target and the returned field at a detector. We simulate an adaptive optics system that utilizes this relation to focus a beam through atmospheric turbulence onto a rough surface.
通过大气湍流传播到远程目标的激光束会出现强度波动。如果目标是合作性的并提供相干回波光束,原则上,在光束发射器和自适应光学器件附近测量的相位可以校正这些波动。然而,通常目标是不合作的。在这种情况下,我们表明可以使用来自目标的非相干回波。利用互易原理,我们推导出目标处的场与探测器处的回波场之间的一种新关系。我们模拟了一个自适应光学系统,该系统利用这种关系通过大气湍流将光束聚焦到粗糙表面上。