论文标题
使用微观Fano激光器进行腔倾角
Cavity-dumping using a microscopic Fano laser
论文作者
论文摘要
低能消耗和高速的微型塑料对于片上光子网络至关重要。目前,微型塑料的调制是基于调节激光的增益,这意味着输出峰值功率和调制能量之间的权衡。此外,输出脉冲的时间宽度受载体松弛时间的限制。这些局限性可以通过通过腔倾倒方案调节激光器的损失来克服这些局限性,这是强烈和超短脉冲提取的理想选择。然而,腔体倾斜激光器的微型化是一个长期的挑战,尚未实现微小腔体倾斜的激光器。在这里,我们证明了基于光学FANO共振的超小腔体倾斜的显微镜激光器,该激光器的峰值功率的光脉冲比相应的常规增益调节激光高一个数量级以上。该演示为实现低功率芯片尺度应用的微观激光铺平了道路。
A microlaser with low energy consumption and high speed is crucial for on-chip photonic networks. Presently, the modulation of microlasers is based on modulating the gain of the laser, which implies a trade-off between the output peak power and the modulation energy. Besides, the temporal width of the output pulse is restricted by the carrier relaxation time. These limitations can be overcome by modulating, instead, the loss of the laser by the scheme of cavity dumping, which is ideal for intense and ultrashort pulse extraction. However, the miniaturization of cavity-dumped lasers has been a long-standing challenge, and no microscopic cavity-dumped lasers were yet realized. Here we demonstrate an ultra-small cavity-dumped microscopic laser based on an optical Fano resonance, which generates optical pulses with peak power more than one order of magnitude higher than the corresponding conventional gain-modulated laser. This demonstration paves the way for realizing microscopic lasers for low-power chip-scale applications.