Auth Dominik, Liu Songtao, Norman Justin, Edward Bowers John, Breuer Stefan
Opt Express. 2019 Sep 16;27(19):27256-27266. doi: 10.1364/OE.27.027256.
Mode-locked InAs/InGaAs quantum dot lasers emitting optical frequency combs centered at 1310 nm are promising sources for high-speed and high-capacity communication applications. We report on the stable optical pulse train generation by a monolithic passively mode-locked edge-emitting two-section quantum dot laser based on a five-stack InAs/InGaAs dots-in-a-well structure directly grown on an on-axis (001) silicon substrate by solid-source molecular beam epitaxy. Optical pulses as short as 1.7 ps at a pulse repetition rate or inter-mode beat frequency of 9.4 GHz are obtained. A minimum pulse-to-pulse timing jitter of 9 fs, corresponding to a repetition rate line width of 400 Hz, is demonstrated. The generated optical frequency combs yield exceptional low amplitude jitter performance and comb widths exceed 5.5 nm at a -3 dB criteria, containing more than 100 comb carriers.
锁模发射中心波长为1310 nm光频梳的InAs/InGaAs量子点激光器是高速大容量通信应用的理想光源。我们报道了基于通过固体源分子束外延直接生长在轴向(001)硅衬底上的五堆叠InAs/InGaAs阱中量子点结构的单片被动锁模边缘发射两段量子点激光器产生稳定光脉冲序列的情况。在9.4 GHz的脉冲重复率或模间拍频下获得了短至1.7 ps的光脉冲。展示了最小脉冲间定时抖动为9 fs,对应于400 Hz的重复率线宽。所产生的光频梳具有极低的幅度抖动性能,在-3 dB标准下梳齿宽度超过5.5 nm,包含100多个梳齿载波。