Sun Shiyu, Mashanovich Goran Z, Peacock Anna C
Opt Express. 2024 Mar 11;32(6):8715-8722. doi: 10.1364/OE.509992.
Silicon planar waveguides are designed to maximize the wavelength conversion efficiency via the use of Raman-enhanced four-wave mixing in the telecom band. By investigating the dispersion properties of various rib waveguide structures, the optimum etch depth and width are selected to obtain efficient phase-matching for a continuous-wave pump at 1545 nm. The design benefits from good fabrication tolerance in the structural parameters, which are well within the precision of standard lithography and etching processes. Using the optimized waveguides, simulations show that it is possible to reach conversion efficiencies as high as ∼45 dB for waveguide lengths as short as 4.6 cm, with a pump power of only 130 mW. This enhancement in the conversion efficiency is about 50 dB higher than conventional values for FWM in integrated silicon photonic systems, highlighting the benefits of exploiting the coupling between the two nonlinear processes.
硅平面波导的设计目的是通过在电信波段利用拉曼增强四波混频来最大化波长转换效率。通过研究各种脊形波导结构的色散特性,选择最佳的蚀刻深度和宽度,以实现对1545 nm连续波泵浦的有效相位匹配。该设计得益于结构参数良好的制造容差,这些参数完全在标准光刻和蚀刻工艺的精度范围内。使用优化后的波导,模拟结果表明,对于仅4.6 cm长的波导,在泵浦功率仅为130 mW的情况下,有可能达到高达约45 dB的转换效率。这种转换效率的提高比集成硅光子系统中四波混频的传统值高出约50 dB,突出了利用这两个非线性过程之间耦合的好处。