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Intra-fiber mode combining schemes, demonstrating high power brightness preservation and coherent-coupling brightness enhancement

机译:光纤内模式组合方案,展示了高功率亮度保持和相干耦合亮度增强

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We demonstrate intra-fiber couplers performance that is close to complete brightness preservation up to 3kW. Furthermore, when mutually coherent sources were used, the same couplers were able to achieve brightness enhancement with almost no beam quality (BQ) deterioration. The couplers are based on an adiabatic, all-fiber, mode coupling device preserving the lowest spatial mode orders. Brightness levels that approach the theoretical limits were achieved by compressing the participating modes into a tight cross section. Incoherent combination is shown for 2×1, 3×1 and 7×1 combined elements. Additionally, we present a solution for preserving the beam propagation factor of the coupler by using a specialty engineered core delivery fiber. The fabricated components are fully fiber- integrated, hence, without free-space limitations. An overall transmission of >90% was obtained, while the coupler-delivery connection is responsible for less than 0.5% loss. Consequently, relatively low temperatures were observed in the combiner package. Alternatively, utilizing two mutually coherent sources, a quadratic brightness factor improvement was demonstrated. The scheme does not require polarization preserving fibers, and achieved rugged 'in-phase' mode-locking. This allows for a significantly simplified scheme, compared to common coherent combining methods. Prospect on future trends relating to nonlinearities and thermal load management are discussed.
机译:我们证明了光纤内耦合器的性能接近完全保持3kW的亮度。此外,当使用相互相干的光源时,相同的耦合器能够实现亮度增强,而光束质量(BQ)几乎不会降低。耦合器基于绝热全光纤模式耦合设备,可保持最低的空间模式阶数。通过将参与模式压缩为紧密的横截面,可以达到接近理论极限的亮度水平。显示了2×1、3×1和7×1组合元素的非相干组合。此外,我们提出了一种通过使用专用工程纤芯传输光纤来保持耦合器光束传播因子的解决方案。所制造的组件是完全纤维集成的,因此没有自由空间的限制。整体传输率大于90%,而耦合器-传送连接的损耗小于0.5%。因此,在组合器包装中观察到相对较低的温度。可替代地,利用两个相互关联的光源,展示了二次亮度因子的改善。该方案不需要保偏光纤,并且实现了坚固的“同相”锁模。与常见的相干合并方法相比,这可以显着简化方案。讨论了与非线性和热负荷管理有关的未来趋势。

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