arXiv · 2102.10311
Near octave-spanning perfect soliton crystals in AlN microresonators
Abstract
The perfect soliton crystal (PSC) was recently discovered as an extraordinary Kerr soliton state with regularly distributed soliton pulses and enhanced comb line power spaced by multiples of the cavity free spectral ranges (FSRs). The modulation of continuous-wave excitation in optical microresonators and the tunable repetition rate characteristic will significantly enhance and extend the application potential of soliton microcombs for self-referencing comb source, terahertz wave generation, and arbitrary waveform generation. However, the reported PSC spectrum is generally narrow. Here, we demonstrate the deterministic accessing of versatile perfect soliton crystals in the AlN microresonators (FSR ~374 GHz), featuring a broad spectral range up to 0.96 of an octave-span (1170-2300 nm) and terahertz repetition rates (up to ~1.87 THz). The measured 60-fs short pulses and low-noise characteristics confirms the high coherence of the PSCs
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Haizhong Weng, Adnan Ali Afridi, Jia Liu, Jing Li, Jiangnan Dai, Xiang Ma, Yi Zhang, Qiaoyin Lu, Weihua Guo, John F. Donegan. 2021-02-20. Near octave-spanning perfect soliton crystals in AlN microresonators. https://doi.org/10.1364/ol.422842
Cite the original work for its findings. Save a collection to share your selection of sources.