论文标题
在两光子吸收和自由载体吸收的影响下硅微孔子中Kerr梳子的产生分析
Analysis of Kerr comb generation in silicon microresonators under the influence of two-photon absorption and free-carrier absorption
论文作者
论文摘要
Kerr频率梳子的产生依赖于专用的波导平台,这些平台可针对超低损失进行优化,同时提供相对有限的功能,仅限于被动构件。与此相比,硅光子平台提供了高度性能的高性能设备的组合,但由于强大的两光吸收(TPA)和随后的自由核能吸收(FCA),因此被视为在近红外(NIR)电信波长上固有地不适合Kerr Comb Generations。在这里,我们提出了一项理论研究,该研究量化了TPA和FCA对KERR梳形成的影响,并基于Lugiato-Lefever方程(LLE)的修改版本。我们发现,只要通过反向偏置的P-i-NJUnction降低了TPA生成的自由载体的停留时间,并且适当地选择了泵参数。我们通过LLE的时间积分来验证我们的分析预测,并提出了硅微孔子的特定设计,甚至可能支持耗散性Kerr Soliton梳子的形成。
Kerr frequency comb generation relies on dedicated waveguide platforms that are optimized towards ultralow loss while offering comparatively limited functionality restricted to passive building blocks. In contrast to that, the silicon-photonic platform offers a highly developed portfolio of high-performance devices, but is deemed to be inherently unsuited for Kerr comb generation at near-infrared (NIR) telecommunication wavelengths due to strong two-photon absorption (TPA) and subsequent free-carrier absorption (FCA). Here we present a theoretical investigation that quantifies the impact of TPA and FCA on Kerr comb formation and that is based on a modified version of the Lugiato-Lefever equation (LLE). We find that silicon microresonators may be used for Kerr comb generation in the NIR, provided that the dwell time of the TPA-generated free-carriers in the waveguide core is reduced by a reverse-biased p-i-njunction and that the pump parameters are chosen appropriately. We validate our analytical predictions with time integrations of the LLE, and we present a specific design of a silicon microresonator that may even support formation of dissipative Kerr soliton combs.