Enhanced Single Cavity Soliton Generation in Kerr Microresonators Via Inverse-Kelly Sideband

Enhanced Single Cavity Soliton Generation in Kerr Microresonators Via Inverse-Kelly Sideband
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通过逆凯利边带增强克尔微谐振器中的单腔孤子生成

DOI:
10.1109/jphot.2017.2703154
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发表时间:
2017-05
影响因子:
2.4
通讯作者:
Qiu Kun
Qiu Kun
中科院分区:
工程技术4区
文献类型:
--
作者:
Liao Mingle;Zhou Heng;Geng Yong;Ling Yun;Wu Baojian;Qiu Kun

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微谐振器中耗散腔孤子的形成为超短脉冲合成和克尔频率梳锁模提供了一种有效的方法。然而,由于耗散腔孤子从连续波泵浦中自发产生,确定性地控制腔内孤子的数量仍然具有挑战性。本文提出了一种利用克尔梳状谱中的逆凯利边带产生来实现微谐振腔中单腔孤子形成的有效而简单的方法。该方法只需要固定速度的单向泵浦扫频就可以获得单孤子态,避免了复杂的泵浦扫描轨迹和高频泵浦调制。此外,我们报告的单孤子产生的确定性使用所提出的方法,统计分析表明,优良的确定性高达98.7%。
The formation of dissipative cavity solitons in microresonators provides an efficient process for ultrashort pulse synthesis and mode-locking of Kerr frequency combs. However, as dissipative cavity solitons arise spontaneously from a continuous-wave pump, deterministically controlling the number of intracavity solitons remains challenging to date. In this paper, we propose an efficient yet easy way to access single cavity soliton formation in microresonators via inverse-Kelly sideband generation in Kerr comb spectrum. Our method only requires fixed-speed unidirectional pump frequency sweeping to achieve single soliton state, avoiding complex pump scanning trajectory and high frequency pump modulation. Moreover, we report on the determinacy of single-soliton generation using the proposed method; statistic analysis shows that excellent determinacy as high as 98.7% is achieved.
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