论文标题
在光学纳米纤维上设计和实施可调的复合光子晶体腔
Design and implementation of a tunable composite photonic crystal cavity on an optical nanofiber
论文作者
论文摘要
我们报告了一种在光学纳米纤维(ONF)上设计和实施的新方法。关键点是通过组合ONF和chir的时期缺陷模式光栅来创建复合光子晶体腔(CPCC)。使用数值模拟,我们在设计波长周围\ pm10 nm的腔谐振波长调整腔共振波长时,设计了CPCC。我们在实验上证明了CPCC的可调性,显示出与仿真结果的良好一致性。我们的结果为带宽量子发射器狭窄的ONF腔 - 量子 - 电动力学的多功能平台奠定了基础。
We report a novel approach to the design and implementation of a tunable cavity on an optical nanofiber (ONF). The key point is to create a composite photonic crystal cavity (CPCC), by combining an ONF and a chirped period defect mode grating. Using numerical simulations we design the CPCC with low scattering loss while tuning the cavity resonance wavelength of \pm10 nm around the designed wavelength. We experimentally demonstrate the tunability of the CPCC, showing good agreement with the simulation results. Our results lay the foundation for a versatile platform for ONF cavity-quantum-electrodynamics with narrow bandwidth quantum emitters.