论文标题
耗散kerr腔孤子的相位和强度控制
Phase and Intensity Control of Dissipative Kerr Cavity Solitons
论文作者
论文摘要
耗散性的kerr腔孤子是光的脉冲,可以持续使用相干驱动的非线性光谐振器。由于它们丰富的非线性动力学和在相干微孔子光学频率梳的产生中,它们在过去十年中引起了极大的关注。尽管绝大多数实现都依赖于\ emph {同质}连续波驾驶,但索利顿的“可塑性”与\ emph {不均匀}驾驶相结合,为许多应用提供了有吸引力的优势。在这里,我们回顾了在存在不均匀驾驶场上Kerr腔孤子的动态和应用的最新研究。特别是,我们总结了显着的理论发展,这些发展允许在存在泵相或振幅不均匀性的情况下对CS运动进行分析,并调查了使用脉冲驱动的最新实验,以实现能节能和灵活的微孔子光学频率梳子。
Dissipative Kerr cavity solitons are pulses of light that can persist in coherently driven nonlinear optical resonators. They have attracted significant attention over the past decade due to their rich nonlinear dynamics and key role in the generation of coherent microresonator optical frequency combs. Whilst the vast majority of implementations have relied on \emph{homogeneous} continuous wave driving, the soliton's "plasticity" combined with \emph{inhomogeneous} driving offers attractive advantages for a host of applications. Here we review recent studies into the dynamics and applications of Kerr cavity solitons in the presence of inhomogeneous driving fields. In particular, we summarise the salient theoretical developments that allow for the analysis of CS motion in the presence of pump phase or amplitude inhomogeneities, and survey recent experiments that use pulsed driving to realise energy efficient and flexible microresonator optical frequency combs.