Dynamic polarization control enables reliable broadband single-soliton microcombs in silicon carbide with 108 GHz FSR, over 450 nm span, 39% wider 20-dB bandwidth, and 60% higher comb power.
Photonic-chip-based frequency combs
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
fields
physics.optics 2verdicts
UNVERDICTED 2representative citing papers
Ultraprecision machining of crystalline microresonators achieves systematic dispersion engineering that produces coherent broadband frequency combs with suppressed spatial mode interactions.
citing papers explorer
-
Thermally accessible broadband soliton microcombs in silicon carbide enabled by dynamic polarization control
Dynamic polarization control enables reliable broadband single-soliton microcombs in silicon carbide with 108 GHz FSR, over 450 nm span, 39% wider 20-dB bandwidth, and 60% higher comb power.
-
Systematic dispersion engineering of crystalline microresonators for broadband and coherent frequency comb generation
Ultraprecision machining of crystalline microresonators achieves systematic dispersion engineering that produces coherent broadband frequency combs with suppressed spatial mode interactions.