Numerical demonstration of a multistage cascaded Raman soliton shift structure in mid-infrared region

Yiwei Hou, Qi Wu, Xiaodong Wu, Fei Liu, Hongyu Luo, Jianfeng Li
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Abstract

We demonstrated a three-stage cascaded Raman soliton frequency shift structure in mid-infrared region (MIR) through numerical simulation. By cascading germania-core fiber, Er3+ ZBLAN fiber amplifier with an indium fluoride or (InF3) or TeO2-Bi2O3-ZnO-Na2O (TBZN) fiber, we achieved 2-4.75 μm and 2-5.5 μm tunable range respectively. When the same tunable range was achieved, both the energy and conversion efficiency of Raman solitons in the designed three stage cascaded structure were greatly improved, comparing with structure with single Raman shifter fiber. Our work could provide an effective way to improve the energy and conversion efficiency of Raman solitons in the commonly used single Raman frequency shift structure.
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中红外区域多级级联拉曼孤子位移结构的数值模拟
通过数值模拟研究了中红外区域的三级级联拉曼孤子频移结构。通过级联锗芯光纤,Er3+ ZBLAN光纤放大器与氟化铟或(InF3)或TeO2-Bi2O3-ZnO-Na2O (TBZN)光纤,分别实现了2-4.75 μm和2-5.5 μm的可调谐范围。在达到相同可调谐范围的情况下,与单拉曼移位光纤结构相比,设计的三级级联结构中的拉曼孤子的能量和转换效率都有很大提高。我们的工作为提高常用的单拉曼频移结构中拉曼孤子的能量和转换效率提供了一种有效的方法。
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