Electrically pumped ultra-efficient quantum frequency conversion on thin-film lithium niobate chip

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Abstract

Quantum frequency conversion (QFC) plays a crucial role in constructing seamless interconnection between quantum systems operating at different wavelengths. To advance future quantum technology, chipscale integrated QFC components, featuring high efficiency, small footprint, low power consumption, and high scalability, are indispensable. In this work, we demonstrate the first hybrid integrated QFC chip on a thin-film lithium niobate platform that connects the telecom and visible bands. Benefiting from the periodically poled microring resonator with ultra-high normalized conversion efficiency of 386,000%/W, an ultra-low pump power of 360 μW is achieved, which is more than two orders of magnitude lower than the traditional straight waveguide scheme. By injecting current into the chip, an on-chip quantum efficiency of 57% and a noise count of ∼7000 counts per second are achieved. Such an electrically pumped, integrated, and scalable QFC chip would significantly advance the integration of quantum networks and the development of chip-scale quantum optical systems.

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APA

Wang, X., Jiao, X. F., Cao, B., Liu, Y., Xie, X. P., Zheng, M. Y., … Pan, J. W. (2026). Electrically pumped ultra-efficient quantum frequency conversion on thin-film lithium niobate chip. Advanced Photonics. https://doi.org/10.1117/1.AP.8.1.016011

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