CW Supercontinuum Generation in Photonic Crystal Fibres with Two Zero-Dispersion Wavelengths

A. Kudlinski, B. Cumberland, J. Travers, G. Bouwmans, Y. Quiquempois, A. Mussot
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引用次数: 12

Abstract

This study is devoted to supercontinuum generation in photonic crystal fibres using a continuous-wave pumping scheme. We demonstrate that the spectral broadening of a continuous-wave laser can be more efficiently achieved in a short piece of photonic crystal fibre with two zero-dispersion wavelengths rather than in a fibre with a single one. This is due to efficient self-frequency shift of the solitons initially created by modulation instability, because their peak power is kept high in fibres with two zero-dispersion wavelengths. We then focus on the dynamics of the supercontinuum evolution under continuous-wave pumping in a series of different photonic crystal fibres exhibiting two zero-dispersion wavelengths. Control of the supercontinuum spectral extension is demonstrated as well as the changing dynamics as the zero-dispersion wavelengths are brought closer together. For closest zero-dispersion wavelengths, the spectral broadening is mainly due to parametric processes. For increasing spectral separation between the two zero-dispersion wavelengths, the soliton self-frequency shift due to intrapulse Raman scattering becomes more important. The soliton self-frequency shift is canceled just before the second zero-dispersion wavelength and some energy is transferred to a phase-matched dispersive wave. We also pay particular attention to the effect of the water absorption band located around 1380 nm.
两个零色散波长光子晶体光纤中连续波超连续谱的产生
本文研究了利用连续波泵浦方案在光子晶体光纤中产生超连续谱。我们证明了在具有两个零色散波长的短光子晶体光纤中比在具有单个零色散波长的光纤中更有效地实现了连续波激光器的光谱展宽。这是由于最初由调制不稳定性产生的孤子的有效自频移,因为它们的峰值功率在具有两个零色散波长的光纤中保持很高。然后,我们重点研究了连续波泵浦下一系列具有两个零色散波长的不同光子晶体光纤的超连续演化动力学。研究了超连续光谱扩展的控制以及零色散波长越接近时的动态变化。对于最接近的零色散波长,光谱展宽主要是由参量过程引起的。为了增加两个零色散波长之间的光谱距离,由于脉冲内拉曼散射引起的孤子自频移变得更加重要。在第二个零色散波长之前,孤子的自频移被取消,一些能量被转移到相位匹配的色散波上。我们还特别关注位于1380 nm附近的吸水带的影响。
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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