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Coherent coupling of vertical-cavity surface-emitting laser arrays and efficient beam combining by diffractive optical elements: concept and experimental verification

机译:垂直腔面发射激光器阵列的相干耦合和衍射光学元件的高效光束合并:概念和实验验证

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摘要

A phase-locked diode-laser system based on master-slave coupling of two-dimensional vertical-cavity surface-emitting laser (VCSEL) arrays by injection locking is presented. Frequencies and phases are adjusted by laser-trimmed microresistors. Additional beam-transformation optics consisting of two diffractive optical elements (DOEs) and a Fourier lens concentrates most of the far-field power in a nearly diffraction-limited beam. Both the VCSEL array and the microlens array are monolithically integrated and mounted in a compact module. With an array of 21 slave lasers a system coherence of 95% (for several hours) and of nearly 90% (for several months) has been demonstrated without any active phase control. The scalability of the output power has been verified by locking of an array of 77 slave lasers with a system coherence of 78%. The optical system efficiency is 20-23%; with beam-transformation optics this efficiency could be improved to 44%.
机译:提出了一种基于注入锁定的二维垂直腔面发射激光器(VCSEL)阵列主从耦合的锁相二极管激光系统。频率和相位通过激光微调电阻器进行调节。由两个衍射光学元件(DOE)和一个傅立叶透镜组成的附加光束转换光学器件,将大部分远场功率集中在几乎受衍射限制的光束中。 VCSEL阵列和微透镜阵列都被单片集成并安装在紧凑的模块中。使用21个从属激光器阵列,已证明系统相干性为95%(持续数小时),接近90%(持续数月),而没有任何有源相位控制。输出功率的可扩展性已通过锁定77个从激光器的阵列进行了验证,系统相关性为78%。光学系统效率为20-23%;使用光束转换光学器件,该效率可以提高到44%。

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