论文标题
利用宽带频率梳子的超模型波导
Exploiting Ultralow Loss Multimode Waveguides for Broadband Frequency Combs
论文作者
论文摘要
高约束波导中的低传播损失对于基于芯片的非线性光子应用至关重要。通常需要进行复杂的制造过程,以减少波导界面处的散射点,以实现超低传播损失。在这里,我们通过使用高度多模结构来塑造模式来显示超大传播损失,从而减少其与波导界面的重叠,从而放松制造处理要求。实验证明,具有内在质量因子(Q)为31.8 $ \ $ $ $ $ \ $ 440万美元的微孔子。尽管微孔子支持10个横向模式,只有基本模式是激发的,并且在使用非线性绝热弯曲时未观察到高阶模式。测量参数振荡的73 $μ$ W的记录低阈值泵功率,宽带,几乎八度跨度跨越了单纤维频率梳子,而没有任何高阶模式的符号,跨度从1097 nm到2040 nm到2040 nm(126 thz),在多模块微载体中生成了。这项工作提供了一种设计方法,可以应用于不同的材料平台,以实现和使用Ultrahigh-Q多模微波孔。
Low propagation loss in high confinement waveguides is critical for chip-based nonlinear photonics applications. Sophisticated fabrication processes which yield sub-nm roughness are generally needed to reduce scattering points at the waveguide interfaces in order to achieve ultralow propagation loss. Here, we show ultralow propagation loss by shaping the mode using a highly multimode structure to reduce its overlap with the waveguide interfaces, thus relaxing the fabrication processing requirements. Microresonators with intrinsic quality factors (Q) of 31.8 $\pm$ 4.4 million are experimentally demonstrated. Although the microresonators support 10 transverse modes only the fundamental mode is excited and no higher order modes are observed when using nonlinear adiabatic bends. A record-low threshold pump power of 73 $μ$W for parametric oscillation is measured and a broadband, almost octave spanning single-soliton frequency comb without any signatures of higher order modes in the spectrum spanning from 1097 nm to 2040 nm (126 THz) is generated in the multimode microresonator. This work provides a design method that could be applied to different material platforms to achieve and use ultrahigh-Q multimode microresonators.