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000641261 037__ $$aPUBDB-2025-04992
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000641261 1001_ $$aJacobsen, Andreas$$b0
000641261 1112_ $$a2025 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)$$cMunich$$d2025-06-23 - 2025-06-27$$wGermany
000641261 245__ $$aOctave-Spanning Soliton Microcomb with Over 50% Conversion Efficiency Enabled by Strong Mode Coupling
000641261 260__ $$bIEEE$$c2025
000641261 29510 $$a2025 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC) : [Proceedings] - IEEE, 2025. - ISBN 979-8-3315-1252-1 - doi:10.1109/CLEO/Europe-EQEC65582.2025.11110909
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000641261 520__ $$aDissipative Kerr solitons (DKS), which provide coherent and stable frequency combs, have emerged as a powerful tool for a wide range of applications in metrology, spectroscopy, telecommunications [1]. However, one of the major challenges hindering their practical deployment is the inherently low pump-to-comb conversion efficiency [2], [3], which is typically restricted to only a few percent. Recent advances have introduced promising strategies to enhance conversion efficiency in single-soliton states, including new pumping schemes such as pulsed pumping [4] and novel cavity designs like photonic molecules [5]. Nevertheless, existing high-efficiency demonstrations have thus far been constrained by limited optical bandwidths, falling short of the broad spectral coverage required for demanding applications such as self-referencing and broadband spectroscopy.
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000641261 7001_ $$aLiu, Yang$$b1
000641261 7001_ $$0P:(DE-H253)PIP1094154$$aWildi, Thibault$$b2$$udesy
000641261 7001_ $$aZhao, Yanjing$$b3
000641261 7001_ $$aYe, Chaochao$$b4
000641261 7001_ $$aZheng, Yi$$b5
000641261 7001_ $$ade Beeck, Camiel Op$$b6
000641261 7001_ $$aCarreira, José$$b7
000641261 7001_ $$aGeiselmann, Michael$$b8
000641261 7001_ $$aYvind, Kresten$$b9
000641261 7001_ $$0P:(DE-H253)PIP1092814$$aHerr, Tobias$$b10$$udesy
000641261 7001_ $$aPu, Minhao$$b11
000641261 773__ $$a10.1109/cleo/europe-eqec65582.2025.11110909
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