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Tunable Room Temperature THz Sources Based on Nonlinear Mixing in a Hybrid Optical and THz Micro-Ring Resonator

机译:基于混合光学和太赫兹微环谐振器非线性混频的可调谐室温THz源

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摘要

We propose and systematically investigate a novel tunable, compact room temperature terahertz (THz) source based on difference frequency generation in a hybrid optical and THz micro-ring resonator. We describe detailed design steps of the source capable of generating THz wave in 0.5–10 THz with a tunability resolution of 0.05 THz by using high second order optical susceptibility (x(2)) in crystals and polymers. In order to enhance THz generation compared to bulk nonlinear material, we employ a nonlinear optical micro-ring resonator with high-Q resonant modes for infrared input waves. Another ring oscillator with the same outer radius underneath the nonlinear ring with an insulation of SiO2 layer supports the generated THz with resonant modes and out-couples them into a THz waveguide. The phase matching condition is satisfied by engineering both the optical and THz resonators with appropriate effective indices. We analytically estimate THz output power of the device by using practical values of susceptibility in available crystals and polymers. The proposed source can enable tunable, compact THz emitters, on-chip integrated spectrometers, inspire a broader use of THz sources and motivate many important potential THz applications in different fields.
机译:我们提出并系统地研究一种新型的可调谐,紧凑型室温太赫兹(THz)光源,该光源基于在混合光学和THz微环谐振器中产生的差分频率。我们描述了通过在晶体和聚合物中使用高二阶光学磁化率(x(2))能够产生0.5-10 THz的THz波且可调分辨率为0.05 THz的光源的详细设计步骤。为了与整体非线性材料相比提高THz的产生,我们对红外输入波采用了具有高Q谐振模式的非线性光学微环谐振器。在具有SiO2绝缘层的非线性环下面的另一个具有相同外半径的环形振荡器以谐振模式支持生成的THz,并将其耦合到THz波导中。通过对光学谐振器和太赫兹谐振器进行工程设计,使其具有适当的有效指标,即可满足相位匹配条件。我们通过使用在可用晶体和聚合物中的磁化率的实用值来分析估算该设备的THz输出功率。拟议中的光源可以实现可调谐的紧凑型太赫兹发射器,片上集成光谱仪,激发太赫兹源的广泛使用并激发不同领域中许多重要的潜在太赫兹应用。

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