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Far-detuned mid-IR wavelength conversion at 4.05 μm in a tellurium oxide rib waveguide pumped at 1550?nm: Design and analysis

机译:在1550Ω·NM泵送的碲氧化锆肋波导中的4.05μm处远离4.05μm的远离损伤的中外波长转换:设计和分析

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We report the design and numerical analysis of a tellurium oxide rib waveguide pumped with femtosecond laser pulses at 1550?nm for near and mid-infrared wavelength conversion at 0.96 and 4.05 μ m, respectively. The wavelength conversion principle is based on the degenerate four-wave mixing in the designed tellurium oxide rib waveguide device. The corresponding detuning in the frequencies is as large as ~120?THz at both sides of the pump frequency. This is the largest detuning of the frequencies obtained using a TeO 2 rib waveguide via a four-wave mixing process to the best of our knowledge. Such waveguide-based light sources are required for various potential applications, including chemical sensing, absorption spectroscopy, and generation of quantum correlated photons on future nonlinear photonic integrated circuits.
机译:我们报告了在1550·nm下用Femtosecond激光脉冲泵浦的碲氧化物肋波导的设计和数值分析,分别为0.96和4.05μm的近和中红外波长转换。 波长转换原理基于设计的碲氧化物肋波导装置中的退化四波混合。 频率的相应静止在泵频率的两侧具有大约120°THz。 这是通过四波混合过程通过四波混合过程所获得的使用Teo 2肋波导而获得的频率的最大损伤。 各种潜在应用需要这种基于波导的光源,包括化学感测,吸收光谱和在未来非线性光子集成电路上的量子相关光子的产生。

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