Vorontsov Mikhail A, Lachinova Svetlana L, Beresnev Leonid A, Weyrauch Thomas
School of Engineering, University of Dayton, 300 College Park, Dayton, Ohio 45469, USA.
J Opt Soc Am A Opt Image Sci Vis. 2010 Nov 1;27(11):A106-21. doi: 10.1364/JOSAA.27.00A106.
Control methods and system architectures that can be used for locking in phase of multiple laser beams that are generated at the transmitter aperture plane of a coherent fiber-collimator array system (pupil-plane phase locking) are considered. In the proposed and analyzed phase-locking techniques, sensing of the piston phase differences is performed using interference of periphery (tail) sections of the laser beams prior to their clipping by the fiber-collimator transmitter apertures. This obscuration-free sensing technique eliminates the need for a beam splitter being directly located inside the optical train of the transmitted beams--one of the major drawbacks of large-aperture and/or high-power fiber-array systems. Numerical simulation results demonstrate efficiency of the proposed phase-locking methods.
考虑了可用于在相干光纤准直器阵列系统的发射孔径平面(瞳孔平面锁相)处产生的多束激光束进行锁相的控制方法和系统架构。在所提出和分析的锁相技术中,在激光束被光纤准直器发射孔径截断之前,利用激光束周边(尾部)部分的干涉来感测活塞相位差。这种无遮挡传感技术消除了在发射光束的光学路径中直接设置分束器的需求,而分束器是大孔径和/或高功率光纤阵列系统的主要缺点之一。数值模拟结果证明了所提出的锁相方法的有效性。