PAPER / ARXIV:2609.19941
Xinrui Luo , Kaixuan Zhu , Yuanlei Wang , Yinke Cheng , Haoyang Luo , Junqi Wang , Yiwen Yang , Zhenyu Xie , Bei-Bei Li , Qihuang Gong , Qi-Fan Yang
RESUMO
A soliton microcomb requires increasing pump power as its optical bandwidth is broadened. Resonant pumping through an auxiliary microresonator can reduce the power required to sustain a soliton, but simultaneously increases the power required for soliton formation. We show that this competition leads to optimal inter-resonator coupling, and the predicted minimum input pump power scales as the two-thirds power of the comb bandwidth, in contrast to the quadratic scaling under direct pumping. Experiments support the opposing power trends, providing a design rule for power-efficient, ultra-broadband soliton microcombs.
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