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Thermal Effects on the Single-Mode Regime of Distributed Modal Filtering Rod Fiber

机译:热对分布式模态滤棒光纤单模态的影响

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Power scaling of fiber laser systems requires the development of innovative active fibers, capable of providing high pump absorption, ultralarge effective area, high-order mode suppression, and resilience to thermal effects. Thermally induced refractive index change has been recently appointed as one major limitation to the achievable power, causing degradation of the modal properties and preventing to obtain stable diffraction-limited output beam. In this paper, the effects of thermally induced refractive index change on the guiding properties of a double-cladding distributed modal filtering rod-type photonic crystal fiber, which exploits resonant coupling with high-index elements to suppress high-order modes, are thoroughly investigated. A computationally efficient model has been developed to calculate the refractive index change due to the thermo-optical effect, and it has been integrated into a full-vector modal solver based on the finite-element method to obtain the guided modes, considering different heating conditions. Results have shown that the single-mode regime of the distributed modal filtering fiber is less sensitive to thermal effects with respect to index-guiding fibers with the same effective area. In fact, as the pump power is increased, their single-mode regime is preserved, being only blue-shifted in wavelength.
机译:光纤激光器系统的功率定标需要开发创新的有源光纤,该有源光纤能够提供高的泵浦吸收能力,超大的有效面积,高阶模抑制和对热效应的适应性。近来已将热诱导的折射率变化指定为对可达到的功率的主要限制,这导致模态特性的劣化并阻止获得稳定的衍射极限输出光束。本文深入研究了热诱导折射率变化对利用高折射率元素共振耦合抑制高阶模态的双包层分布模态滤波棒型光子晶体光纤的导光性能的影响。 。已经开发了一种计算有效的模型来计算由于热光学效应引起的折射率变化,并且已将其集成到基于有限元方法的全矢量模态求解器中,以考虑不同的加热条件来获得导模。 。结果表明,相对于具有相同有效面积的折射率引导纤维,分布式模态滤波纤维的单模态对热效应的敏感性较低。实际上,随着泵浦功率的增加,它们的单模态得以保留,仅波长发生了蓝移。

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