Brian Sia Jia Xu, Li Xiang, Wang Wanjun, Qiao Zhongliang, Guo Xin, Zhou Jin, Littlejohns Callum G, Liu Chongyang, Reed Graham T, Wang Hong
Opt Express. 2020 Aug 17;28(17):25215-25224. doi: 10.1364/OE.400666.
The wavelength region about of 1650 nm enables pervasive applications. Some instances include methane spectroscopy, free-space/fiber communications, LIDAR, gas sensing (i.e. CH, CH, CH), surgery and medical diagnostics. In this work, through the hybrid integration between an III-V optical amplifier and an extended, low-loss wavelength tunable silicon Vernier cavity, we report for the first time, a III-V/silicon hybrid wavelength-tunable laser covering the application-rich wavelength region of 1647-1690 nm. Room-temperature continuous wave operation is achieved with an output power of up to 31.1 mW, corresponding to a maximum side-mode suppression ratio of 46.01 dB. The laser is ultra-coherent, with an estimated linewidth of 0.7 kHz, characterized by integrating a 35 km-long recirculating fiber loop into the delayed self-heterodyne interferometer setup. The laser linewidth is amongst the lowest in hybrid/heterogeneous III-V/silicon lasers.
约1650纳米的波长区域具有广泛的应用。一些例子包括甲烷光谱学、自由空间/光纤通信、激光雷达、气体传感(如CH、CH、CH)、手术和医学诊断。在这项工作中,通过III-V族光放大器与扩展的、低损耗波长可调谐硅微腔之间的混合集成,我们首次报道了一种覆盖1647-1690纳米这一应用丰富波长区域的III-V族/硅混合波长可调谐激光器。在室温连续波工作模式下,实现了高达31.1毫瓦的输出功率,对应的最大边模抑制比为46.01分贝。该激光器具有超相干性,估计线宽为0.7千赫,通过将一个35公里长的环形光纤环集成到延迟自外差干涉仪装置中来表征。该激光器的线宽在混合/异质III-V族/硅激光器中处于最低水平。