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Dual-wavelength nano-engineered Thulium-doped fiber laser via bending of singlemode-multimode-singlemode fiber structure

机译:单模-多模-单模光纤结构弯曲的双波长纳米工程掺Th光纤激光器

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摘要

In this paper, a dual-wavelength fiber laser (DWFL) using nano-engineered Thulium-doped fiber as a gain medium with a bent singlemode-multimode-singlemode fiber structure (SMS) is demonstrated. The SMS structure is packaged systematically using Cr-39 polymer plates to provide linear bending via applied load. Experimental results have proved that the bent SMS is capable to provide highly effective wavelength filter and wavelengths stabilizer by balancing the net cavity gain between the two wavelengths. The DWFL provides very narrow spacing of 0.9 nm, narrow 3 dB spectral linewidth of similar to 0.07 nm and SNR of similar to 42 dB. Based on stability test, very small mode hopping is observed at the two wavelengths having deviations of +/- 0 nm and +/- 0.04 nm respectively. In conjunction, the DWFL provides very stable relative wavelength spacing with a deviation of +/- 0.04 nm. (C) 2016 Published by Elsevier Inc.
机译:在本文中,展示了使用纳米工程掺Th光纤作为具有弯曲单模-多模-单模光纤结构(SMS)的增益介质的双波长光纤激光器(DWFL)。 SMS结构使用Cr-39聚合物板进行系统包装,以通过施加的载荷提供线性弯曲。实验结果证明,弯曲的SMS通过平衡两个波长之间的净腔增益能够提供高效的波长滤波器和波长稳定器。 DWFL提供0.9 nm的非常窄的间距,类似于0.07 nm的3 dB窄光谱线宽和类似于42 dB的SNR。根据稳定性测试,在两个波长分别具有+/- 0 nm和+/- 0.04 nm的偏差处观察到非常小的模式跳跃。结合起来,DWFL提供了非常稳定的相对波长间隔,其偏差为+/- 0.04 nm。 (C)2016由Elsevier Inc.发布

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