频率梳
宽带
能量转换效率
占空比
光学
光电子学
功率(物理)
模式锁定
材料科学
物理
激光器
量子力学
作者
Xiaoxiao Xue,Pei‐Hsun Wang,Yi Xuan,Minghao Qi,Andrew M. Weiner
标识
DOI:10.1002/lpor.201600276
摘要
Microresonator-based Kerr frequency comb (microcomb) generation can potentially revolutionize a variety of applications ranging from telecommunications to optical frequency synthesis. However, phase-locked microcombs have generally had low conversion efficiency limited to a few percent. Here we report experimental results that achieve ~30% conversion efficiency (~200 mW on-chip comb power excluding the pump) in the fiber telecommunication band with broadband mode-locked dark-pulse combs. We present a general analysis on the efficiency which is applicable to any phase-locked microcomb state. The effective coupling condition for the pump as well as the duty cycle of localized time-domain structures play a key role in determining the conversion efficiency. Our observation of high efficiency comb states is relevant for applications such as optical communications which require high power per comb line.
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