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Fusion of Renewable Ring Resonator Lasers and Ultrafast Laser Inscribed Photonic Waveguides

机译:可再生环形谐振激光器与超快激光刻写光子波导的融合

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摘要

We demonstrated the monolithic integration of reusable and wavelength reconfigurable ring resonator lasers and waveguides of arbitrary shapes to out-couple and guide laser emission on the same fused-silica chip. The ring resonator hosts were patterned by a single-mask standard lithography, whereas the waveguides were inscribed in the proximity of the ring resonator by using 3-dimensional femtosecond laser inscription technology. Reusability of the integrated ring resonator – waveguide system was examined by depositing, removing, and re-depositing dye-doped SU-8 solid polymer, SU-8 liquid polymer, and liquid solvent (toluene). The wavelength reconfigurability was validated by employing Rhodamine 6G (R6G) and 3,3′-Diethyloxacarbocyanine iodide (CY3) as exemplary gain media. In all above cases, the waveguide was able to couple out and guide the laser emission. This work opens a door to reconfigurable active and passive photonic devices for on-chip coherent light sources, optical signal processing, and the investigation of new optical phenomena.
机译:我们演示了可重用和波长可重构的环形谐振器激光器以及任意形状的波导的单片集成,以在同一熔融石英芯片上耦合输出并引导激光发射。通过单掩膜标准光刻对环形谐振器主机进行构图,而波导则使用3维飞秒激光刻写技术刻在环形谐振器附近。通过沉积,去除和重新沉积掺杂染料的SU-8固体聚合物,SU-8液体聚合物和液体溶剂(甲苯),检查了集成环形谐振器–波导系统的可重用性。波长可重构性通过采用罗丹明6G(R6G)和3,3'-二乙基氧杂碳花青碘化物(CY3)作为示例增益介质进行了验证。在上述所有情况下,波导都能耦合并引导激光发射。这项工作为可重配置的有源和无源光子设备打开了大门,这些设备可用于片上相干光源,光信号处理以及研究新的光学现象。

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