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Recent advances in coupled laser cavity design

机译:耦合激光腔设计的最新进展

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External cavity coherent beam combining represents a path forward to higher fiber laser radiance, with several groups demonstrating scalable approaches. In this paper, we review recent advances in coupled laser cavity design. In particular, we compare various designs and describe the pros and cons of each with regard to sensitivity to path length errors. Experimental measurements using a specially designed dual-core fiber demonstrate the modal loss from a superposition architecture. A second area of investigation is concerned with Q-switch suppression in coupled laser cavities. The increased cavity loss that accompanies path length errors in the laser arms can suppress lasing, causing an energy build-up in the laser inversion. When the path length errors are removed and the cavity resumes its low loss state, the stored energy can be released in a manner analogous to Q-switching, creating a giant laser pulse. Since the peak power of this pulse can be many orders of magnitude larger than the cw power, the high instantaneous intensity can cause irreparable damage to optical components. We investigate passive systems that are designed to suppress this unwanted Q-switching by allowing alternative lasing paths to clamp the gain.
机译:外腔相干光束组合代表了向更高光纤激光辐射的路径,几组演示可扩展的方法。在本文中,我们审查了耦合激光腔设计的最近进步。特别是,我们比较各种设计并描述了对路径长度误差的敏感性的影响。使用专门设计的双核光纤的实验测量展示了来自叠加架构的模态损耗。第二个研究领域涉及耦合激光腔中的Q开关抑制。伴随激光臂中的路径长度误差的增加的腔损失可以抑制激光,导致激光反转中的能量积聚。当移除路径长度误差并且腔恢复其低损耗状态时,可以以类似于Q切换的方式释放所存储的能量,从而产生巨大的激光脉冲。由于该脉冲的峰值功率可以是大于CW功率的数量级,因此高瞬时强度会对光学组件引起无法弥补的损坏。我们调查了被设计用于通过允许替代激光路径夹紧增益来抑制这种不需要的Q切换的被动系统。

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