皮秒
硅
孤子
色散(光学)
脉冲压缩
光电子学
材料科学
光子
光子学
光子晶体
非线性光学
吸收(声学)
硅光子学
半导体
光学
自由载流子吸收
物理
非线性系统
激光器
电信
雷达
量子力学
计算机科学
作者
Andrea Blanco‐Redondo,Chad Husko,D. Eades,Y. Zhang,Junqing Li,Thomas F. Krauss,Benjamin J. Eggleton
摘要
Solitons are nonlinear waves present in diverse physical systems including plasmas, water surfaces and optics. In silicon, the presence of two photon absorption and accompanying free carriers strongly perturb the canonical dynamics of optical solitons. Here we report the first experimental demonstration of soliton-effect pulse compression of picosecond pulses in silicon, despite two photon absorption and free carriers. Here we achieve compression of 3.7 ps pulses to 1.6 ps with <10 pJ energy. We demonstrate a ~1-ps free-carrier-induced pulse acceleration and show that picosecond input pulses are critical to these observations. These experiments are enabled by a dispersion-engineered slow-light photonic crystal waveguide and an ultra-sensitive frequency-resolved electrical gating technique to detect the ultralow energies in the nanostructured device. Strong agreement with a nonlinear Schrödinger model confirms the measurements. These results further our understanding of nonlinear waves in silicon and open the way to soliton-based functionalities in complementary metal-oxide-semiconductor-compatible platforms.
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