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December 10, 2025Nanophotonics3 citationsOpen Access

Electrically pumped soliton microcombs on thin-film lithium niobate

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XLXiaomin LvZWZe WangTXTianyu Xu

Key Points

  • Soliton microcombs were generated at a 200 GHz repetition frequency with an optical span of 180 nm.
  • Using only 25 mW of pump power, the system achieves efficient operation without optical amplification.
  • The method involved self-injection locking to reduce the laser linewidth, enhancing stability and performance.
  • This innovation supports integrated applications in communication, precision measurement, and information processing.

Abstract

Abstract Thin-film lithium niobate (TFLN) has enabled efficient on-chip electro-optic modulation and frequency conversion for information processing and precision measurement. Extending these capabilities with optical frequency combs unlocks massively parallel operations and coherent optical-to-microwave transduction, which are achievable in TFLN microresonators via Kerr microcombs. However, fully integrated Kerr microcombs directly driven by semiconductor lasers remain elusive, which has delayed integration of these technologies. Here, we demonstrate electrically pumped TFLN Kerr microcombs without optical amplification. With optimized laser-to-chip coupling and optical quality factors, we generate soliton microcombs at a 200 GHz repetition frequency with an optical span of 180 nm using only 25 mW of pump power. Moreover, self-injection locking enables turnkey initiation and substantially narrows the laser linewidth. Our work provides integrated comb sources for TFLN-based communicational, computational, and metrological applications.

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Cite This Study

Lv et al. (2025) studied this question.

synapsesocial.com/papers/69401b372d562116f28f7eb9https://doi.org/10.1515/nanoph-2025-0510
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