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Tunable mid-infrared generation via wide-band four-wave mixing in silicon nitride waveguides

机译:通过氮化硅波导的宽带四波混合可调谐中红外产生

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We demonstrate wide-band frequency down-conversion to the mid-infrared (MIR) using four-wave mixing (FWM) of near-infrared (NIR) femtosecond-duration pulses from an Er:fiber laser, corresponding to 100 THz spectral translation. Photonic-chip-based silicon nitride waveguides provide the FWM medium. Engineered dispersion in the nanophotonic geometry and the wide transparency range of silicon nitride enable large-detuning FWM phase-matching and results in tunable MIR from 2.6 to 3.6 mu m on a single chip with 100-pJ-scale pump-pulse energies. Additionally, we observe up to 25 dB broadband parametric gain for NIR pulses when the FWM process is operated in a frequency up-conversion configuration. Our results demonstrate how integrated photonic circuits pumped with fiber lasers could realize multiple nonlinear optical phenomena on the same chip and lead to engineered synthesis of broadband, tunable, and coherent light across the NIR and MIR wavelength bands. (C) 2018 Optical Society of America
机译:我们使用来自ER:光纤激光器的近红外(NIR)飞秒持续时间脉冲的四波混合(FWM)向中红外(FWM)展示了向中红外(MIR)的宽带频率下转换。光子芯片基氮化硅波导提供FWM培养基。纳米光电几何形状的工程分散和氮化硅的宽透明度范围使得大损伤的FWM相位匹配,并导致可调谐MIR,从2.6到3.6 mu m的单个芯片,具有100pj级泵脉冲能量的单个芯片。此外,当在频率上转换配置中运行FWM过程时,我们观察到NIR脉冲的最多25dB宽带参数增益。我们的结果表明,用光纤激光器泵浦的集成光子电路是如何实现同一芯片上的多个非线性光学现象,并导致跨越NIR和MIR波长带的宽带,可调谐和相干光的合成。 (c)2018年光学学会

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