Ytterbium-doped aluminum oxide photonic platform achieves single-mode lasing, >0.5 W amplification at >70% efficiency and 3.3 dB noise figure, 14 kW peak-power femtosecond pulses, and visible supercontinuum generation from 780 to 476 nm.
R.et al.Amorphous metal oxide mixtures for high-Q integrated nonlinear photonics.arXiv preprint arXiv:2508.14887(2025)
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physics.optics 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Tuning a photonic-crystal bandgap in a driven Kerr microresonator switches the soliton spectrum between a uniform-power Mott-insulator comb and a non-uniform superfluid comb with phase coherence.
citing papers explorer
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Integrated ytterbium gain for visible-near-infrared photonics
Ytterbium-doped aluminum oxide photonic platform achieves single-mode lasing, >0.5 W amplification at >70% efficiency and 3.3 dB noise figure, 14 kW peak-power femtosecond pulses, and visible supercontinuum generation from 780 to 476 nm.
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Nanophotonic control of collective many-body states in Kerr solitons
Tuning a photonic-crystal bandgap in a driven Kerr microresonator switches the soliton spectrum between a uniform-power Mott-insulator comb and a non-uniform superfluid comb with phase coherence.