Octave mid-infrared optical frequency comb from Er:fiber-laser-pumped aperiodically poled Mg: LiNbO 3

In this Letter, we report an octave-spanning mid-infrared (MIR) comb generation with a difference frequency generation (DFG) approach optimized for aperiodically poled M g : L i N b O 3 and nonlinear spectral broadening. An Er:fiber comb is delivered to two branches and amplified in an Yb:fiber and...

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Veröffentlicht in:Optics letters 2020-12, Vol.45 (23), p.6458
Hauptverfasser: Zhou, Lian, Liu, Yang, Lou, Haipeng, Di, Yuanfeng, Xie, Gehui, Zhu, Zhiwei, Deng, Zejiang, Luo, Daping, Gu, Chenglin, Chen, Huaixi, Li, Wenxue
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container_end_page
container_issue 23
container_start_page 6458
container_title Optics letters
container_volume 45
creator Zhou, Lian
Liu, Yang
Lou, Haipeng
Di, Yuanfeng
Xie, Gehui
Zhu, Zhiwei
Deng, Zejiang
Luo, Daping
Gu, Chenglin
Chen, Huaixi
Li, Wenxue
description In this Letter, we report an octave-spanning mid-infrared (MIR) comb generation with a difference frequency generation (DFG) approach optimized for aperiodically poled M g : L i N b O 3 and nonlinear spectral broadening. An Er:fiber comb is delivered to two branches and amplified in an Yb:fiber and an Er:fiber amplifier, respectively. We demonstrate that the two-branch DFG can yield the spectrum tuned over an octave in a fan-out periodically poled lithium niobate. Thus, we obtain an optimized poling period profile and design the aperiodically poled M g : L i N b O 3 . The results demonstrate that broadband combs can be generated in the MIR atmospheric window.
doi_str_mv 10.1364/OL.410958
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title Octave mid-infrared optical frequency comb from Er:fiber-laser-pumped aperiodically poled Mg: LiNbO 3
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