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March 31, 2026Light Science & Applications3 citationsOpen Access

Power-efficient ultra-broadband soliton microcombs in resonantly-coupled microresonators

KZKaixuan ZhuXLXinrui LuoYWYuanlei Wang

Key Points

  • The research aims to improve the efficiency of soliton microcombs for practical applications in optical technologies.
  • Introduced resonant-coupling to soliton microcombs.
  • Compared performance with conventional waveguide-coupled designs.
  • Evaluated increase in spectral span and reduction in repetition frequency.
  • Achieved a threefold increase in spectral span for high-power combs.
  • Obtained up to a tenfold reduction in repetition frequency for octave-spanning operation.
  • Eliminated high pump power requirements, enabling practical deployment.

Abstract

Abstract The drive to miniaturize optical frequency combs for practical deployment has spotlighted microresonator solitons as a promising chip-scale candidate. However, these soliton microcombs could be very power-hungry when their span increases, especially with fine comb spacings. As a result, realizing an octave-spanning comb at microwave repetition rates for direct optical-microwave linkage is considered not possible for photonic integration due to the high power requirements. Here, we introduce the concept of resonant-coupling to soliton microcombs to reduce pump consumption significantly. Compared to conventional waveguide-coupled designs, we demonstrate (i) a threefold increase in spectral span for high-power combs and (ii) up to a tenfold reduction in repetition frequency for octave-spanning operation. This configuration is compatible with laser integration and yields reliable, turnkey soliton generation. By eliminating the long-standing pump-power bottleneck, microcombs will soon become readily available for portable optical clocks, massively parallel data links, and field-deployable spectrometers.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/69cb64b0e6a8c024954b8bd2https://doi.org/10.1038/s41377-026-02186-9
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