Design, fabrication, and characterization of dual-wavelength inhibited-coupling guiding hollow-core fibers

IF 2 3区 物理与天体物理 Q3 OPTICS
Bowen Chen, Tim Kühlthau, Götz Kleem, Thomas Graf, Marwan Abdou Ahmed
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引用次数: 0

Abstract

The present paper reports on the design, fabrication, and characterization of an 8-tube inhibited-coupling guiding hollow-core photonic crystal fiber (IC-HCPCF) capable of guiding both the beam emitted from an Yb:YAG laser at the fundamental wavelength of \(\lambda =1030 \text{nm}\) and its second harmonic at \(\lambda =515 \text{nm}\). By controlling the strut thickness of the glass capillaries to approximately \(362 \text{nm}\), the transmission of laser radiation at both wavelengths was possible with low losses. Optimizing the outer diameter of the glass capillaries mitigates the bending-induced increase of the confinement loss at the wavelength of \(515 \text{nm}\) without compromising the optical performance of the fiber at the wavelength of \(1030 \text{nm}\). Experimental results confirm the near to diffraction-limited beam quality \(\left({M}^{2}<1.15\right)\) of the laser beams exiting the fiber at both operational wavelengths. Operating in the first transmission band at the wavelength of \(1030 \text{nm}\), the calculated chromatic dispersion is \(1.02 \text{ps}/(\text{nm}\bullet \text{km})\), despite a diameter of the hollow core of \(40 \mu \text{m}\). At the wavelength of \(515 \text{nm}\) this value amounts to \(0.62 \text{ps}/(\text{nm}\bullet \text{km})\). The measured losses are \(27.5\pm 0.3 \text{dB}/\text{km}\) at the wavelength of \(515\text{ nm}\) and \(25.7\pm 0.7 \text{dB}/\text{km}\) at the wavelength of \(1030\text{ nm}\), which is comparable to the loss of state-of-the-art IC-HCPCFs with tubular cladding structures. The measured bending-induced increase of the confinement losses confirms the potential of the proposed approach for flexible, low-loss guiding of ultrashort laser pulses at the two wavelengths using a single fiber. This gained flexibility can significantly enhance the options for wavelength selection in laser material processing applications.

双波长抑制耦合导向空心芯光纤的设计、制造与表征
本文报道了一种8管抑制耦合引导空心光子晶体光纤(IC-HCPCF)的设计、制造和性能表征,该光纤能够同时引导Yb:YAG激光在\(\lambda =1030 \text{nm}\)的基波长和\(\lambda =515 \text{nm}\)的二次谐波发射的光束。通过控制玻璃毛细血管的支撑厚度约为\(362 \text{nm}\),可以以低损耗传输两个波长的激光辐射。优化玻璃毛细血管的外径可以在不影响\(1030 \text{nm}\)波长光纤性能的情况下减轻\(515 \text{nm}\)波长处由于弯曲引起的约束损耗增加。实验结果证实了在两种工作波长下从光纤射出的激光束的接近衍射限制的光束质量\(\left({M}^{2}<1.15\right)\)。工作在波长\(1030 \text{nm}\)的第一透射带,计算出的色散为\(1.02 \text{ps}/(\text{nm}\bullet \text{km})\),尽管空心核心的直径为\(40 \mu \text{m}\)。在\(515 \text{nm}\)波长处,该值等于\(0.62 \text{ps}/(\text{nm}\bullet \text{km})\)。测量到的损耗在\(515\text{ nm}\)波长处为\(27.5\pm 0.3 \text{dB}/\text{km}\),在\(1030\text{ nm}\)波长处为\(25.7\pm 0.7 \text{dB}/\text{km}\),这与具有管状包层结构的最先进的ic - hcpcs的损耗相当。测量到的弯曲引起的约束损耗的增加证实了所提出的方法在使用单个光纤的两个波长的超短激光脉冲的柔性、低损耗引导方面的潜力。这种获得的灵活性可以显着增强激光材料加工应用中波长选择的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Physics B
Applied Physics B 物理-光学
CiteScore
4.00
自引率
4.80%
发文量
202
审稿时长
3.0 months
期刊介绍: Features publication of experimental and theoretical investigations in applied physics Offers invited reviews in addition to regular papers Coverage includes laser physics, linear and nonlinear optics, ultrafast phenomena, photonic devices, optical and laser materials, quantum optics, laser spectroscopy of atoms, molecules and clusters, and more 94% of authors who answered a survey reported that they would definitely publish or probably publish in the journal again Publishing essential research results in two of the most important areas of applied physics, both Applied Physics sections figure among the top most cited journals in this field. In addition to regular papers Applied Physics B: Lasers and Optics features invited reviews. Fields of topical interest are covered by feature issues. The journal also includes a rapid communication section for the speedy publication of important and particularly interesting results.
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