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RGB generation by four-wave mixing in small-core holey fibers

机译:通过四波混频在小芯多孔光纤中生成RGB

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摘要

We report the generation of white light comprising red, green, and blue spectral bands from a frequency-doubled fiber laser in submicron-sized cores of microstructured holey fibers. Picosecond pulses of green light are launched into a single suspended core of a silica holey fiber where energy is transferred by an efficient four-wave mixing process into a red and blue sideband whose wavelengths are fixed by birefringent phase matching due to a slight asymmetry of the structure arising during the fiber fabrication. Numerical models of the fiber structure and of the nonlinear processes confirm our interpretation. Finally, we discuss power scaling and limitations of this white light source.
机译:我们报告了由倍频光纤激光器在微结构多孔光纤的亚微米尺寸核心中产生的包括红色,绿色和蓝色光谱带的白光。皮秒级的绿光脉冲发射到二氧化硅多孔光纤的单个悬浮纤芯中,在该纤芯中,能量通过有效的四波混频过程转移到红色和蓝色边带中,该红色和蓝色边带的波长由于双折射相位匹配而固定,这是由于光的不对称性所致。在纤维制造过程中产生的结构。纤维结构和非线性过程的数值模型证实了我们的解释。最后,我们讨论了这种白光源的功率缩放和局限性。

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