Weng Haizhong, Afridi Adnan Ali, Liu Jia, Li Jing, Dai Jiangnan, Ma Xiang, Zhang Yi, Lu Qiaoyin, Guo Weihua, Donegan John F
Opt Lett. 2021 Jul 15;46(14):3436-3439. doi: 10.1364/OL.422842.
The soliton crystal (SC) 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), which will significantly extend the application potential of microcombs in optical clock, signal processing, and terahertz wave systems. However, the reported SC spectra are generally narrow. In this Letter, we demonstrate the generation of a breathing SC in an aluminum nitride (AlN) microresonator (FSR ∼374), featuring a near-octave-spanning (1150-2200 nm) spectral range and a terahertz repetition rate of ∼1.87. The measured 60 fs short pulses and low intensity-noise characteristics confirm the high coherence of the breathing SC. Broadband microcombs with various repetition rates of ∼0.75, ∼1.12, and ∼1.5 were also realized in different microresonators of the same size. The proposed scheme shows a reliable design strategy for broadband soliton generation with versatile dynamic control over the comb line spacing.
孤子晶体(SC)最近被发现是一种非凡的克尔孤子态,具有规则分布的孤子脉冲和增强的梳状线功率,其间隔为腔自由光谱范围(FSR)的倍数,这将显著扩展微梳在光时钟、信号处理和太赫兹波系统中的应用潜力。然而,报道的SC光谱通常较窄。在本信函中,我们展示了在氮化铝(AlN)微谐振器(FSR ∼374)中产生的呼吸孤子晶体,其具有近倍频程跨度(1150 - 2200 nm)的光谱范围和 ∼1.87的太赫兹重复率。测量得到的60 fs短脉冲和低强度噪声特性证实了呼吸孤子晶体的高相干性。在相同尺寸的不同微谐振器中还实现了具有 ∼0.75、∼1.12和 ∼1.5等各种重复率的宽带微梳。所提出的方案展示了一种可靠的设计策略,用于宽带孤子生成,并对梳状线间距进行多功能动态控制。