论文标题
光子晶体微孔谐振器中的分数光学角动量和多缺陷介导的模式重新归式度和方向控制
Fractional optical angular momentum and multi-defect-mediated mode re-normalization and orientation control in photonic crystal microring resonators
论文作者
论文摘要
由于几何形状施加的边界条件,圆形对称光学微孔子中的耳语画廊模式(WGM)显示了整数量化的角动量数。在这里,我们表明将光子晶体图案掺入集成的微林会导致具有分数光学角动量的WGM。通过选择光子晶体周期性以打开光子带隙,带有带边的动量位于未扰动的环的两个WGM之间,我们观察到具有半数量化的角动量数字的杂交WGM($ mathbb {z}} $ + 1/2)。此外,我们表明这些具有分数角矩的模式具有高光学质量因子,具有良好的腔体波导耦合和降低的群速度顺序。此外,通过引入多个人造缺陷,可以将多种模式定位于环内的小体积,而脱位的带边缘状态的相对方向可以很好地控制。我们的工作通过光子晶体揭示了WGM的重新归一化,展示了新型的分数角动量状态和由连续的旋转对称性破裂引起的非平凡多模式方向控制。这些发现有望可用于感应/计量学,非线性光学和空腔量子电动力学。
Whispering gallery modes (WGMs) in circularly symmetric optical microresonators exhibit integer quantized angular momentum numbers due to the boundary condition imposed by the geometry. Here, we show that incorporating a photonic crystal pattern in an integrated microring can result in WGMs with fractional optical angular momentum. By choosing the photonic crystal periodicity to open a photonic bandgap with a band-edge momentum lying between that of two WGMs of the unperturbed ring, we observe hybridized WGMs with half-integer quantized angular momentum numbers ($m \in \mathbb{Z}$ + 1/2). Moreover, we show that these modes with fractional angular momenta exhibit high optical quality factors with good cavity-waveguide coupling and an order of magnitude reduced group velocity. Additionally, by introducing multiple artificial defects, multiple modes can be localized to small volumes within the ring, while the relative orientation of the de-localized band-edge states can be well-controlled. Our work unveils the renormalization of WGMs by the photonic crystal, demonstrating novel fractional angular momentum states and nontrivial multi-mode orientation control arising from continuous rotational symmetry breaking. The findings are expected to be useful for sensing/metrology, nonlinear optics, and cavity quantum electrodynamics.