稀土
激光器
兴奋剂
CMOS芯片
光电子学
模式(计算机接口)
材料科学
计算机科学
光学
物理
操作系统
冶金
作者
Franz X. Kärtner,Patrick T. Callahan,Katia Shtyrkova,Nanxi Li,Neetesh Singh,Ming Xin,Koustuban Ravi,Jelena Notaroš,Sahli Magden,Dietrik Vermeulen,Erich P. Ippen,Michael R. Watts
摘要
Mode-locked lasers provide extremely low jitter optical pulse trains for a number of applications ranging from sampling of RF-signals and optical frequency combs to microwave and optical signal synthesis. Integrated versions have the advantage of high reliability, low cost and compact. Here, we describe a fully integrated mode-locked laser architecture on a CMOS platform that utilizes rare-earth doped gain media, double-chirped waveguide gratings for dispersion compensation and nonlinear Michelson Interferometers for generating an artificial saturable absorber to implement additive pulse mode locking on chip. First results of devices at 1.9 μm using thulium doped aluminum-oxide glass and operating in the Q-switched mode locking regime are presented.
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