论文标题
具有超低阈值的电动光子晶体激光器
Electrically-driven Photonic Crystal Lasers with Ultra-low Threshold
论文作者
论文摘要
需要具有超低能耗和高性能的光源来实现片上通信的光学互连。光子晶体(PHC)纳米腔激光器是填补此角色的最有前途的候选者之一。在这项工作中,我们演示了一个电动的PHC纳米剂,其超低阈值电流为10.2μA,在1540 nm处发射,并在室温下操作。激光器基于INP的键在SI上,并包括一个埋入的异质结构活动区域和侧向P-I-N结。激光的静态特性和热能特性已经表征。研究了疾病和P掺杂吸收对被动腔的Q因子的影响。我们还通过比较光学和电泵浦方案来研究由于侧向P-I-N几何形状引起的泄漏电流。
Light sources with ultra-low energy consumption and high performance are required to realize optical interconnects for on-chip communication. Photonic crystal (PhC) nanocavity lasers are one of the most promising candidates to fill this role. In this work, we demonstrate an electrically-driven PhC nanolaser with an ultra-low threshold current of 10.2 μA emitting at 1540 nm and operated at room temperature. The lasers are InP-based bonded on Si and comprise a buried heterostructure active region and lateral p-i-n junction. The static characteristics and the thermal properties of the lasers have been characterized. The effect of disorder and p-doping absorption on the Q-factor of passive cavities was studied. We also investigate the leakage current due to the lateral p-i-n geometry by comparing the optical and electrical pumping schemes.