Zhang Jianhao, He Sailing
Opt Express. 2017 May 29;25(11):12541-12551. doi: 10.1364/OE.25.012541.
We propose a cladding-free, efficiently tunable, high-quality factor (Q) nanobeam cavity with subwavelength-period nanotentacles (NT), adequately investigate the performance of the cavity, and study the directional heat transfer. By virtue of the excellent heat transfer of Si nanotentacles, a tuning range of more than 6 nm wavelength, with 24mW and 10 KHz switching rate, and 13 μs raising time is experimentally obtained. This result is about twentyfold better than the previous work by Fegadolli [ACS Photon. 2, 470-474 (2015)]. A potential 12nm tuning range with identical power is also theoretically suggested by modifying the silicon structure. With an optimized design, these nanotentacles are demonstrated to have a minimal effect to the cavity and are available to serve as photonic waveguides. This cladding-free design, with a simple fabrication process, is comparable to other proposals in which deep etching, suspended treatment, and troublesome heterogeneous-integration may be needed. Finally but importantly, this smart design can be applied to other photonic cavities, particularly cavities such as ring/disk resonators, in which we reasonably predict a better tuning efficiency due to the thermal circulation. We believe this design is fairly suitable for applications in which light-matter interaction is of primary importance, such as sensing, particle trapping, cavity quantum electrodynamics (CQED), and III-V/Si hybrid lasers with external cavities.
我们提出了一种无包层、高效可调谐、高品质因数(Q)的纳米光束腔,该腔带有亚波长周期的纳米触手(NT),充分研究了该腔的性能,并研究了定向热传递。借助硅纳米触手出色的热传递性能,通过实验获得了超过6nm波长的调谐范围,开关速率为24mW和10KHz,上升时间为13μs。该结果比费加多利此前的工作[《美国化学会光子学》2, 470 - 474 (2015)]好约二十倍。理论上通过修改硅结构还提出了在相同功率下潜在的12nm调谐范围。经过优化设计,这些纳米触手对腔的影响最小,可作为光子波导。这种无包层设计,制造工艺简单,与其他可能需要深刻蚀、悬浮处理和麻烦的异质集成的方案相当。最后但同样重要的是,这种巧妙的设计可应用于其他光子腔,特别是诸如环形/盘形谐振器之类的腔,在其中我们合理预测由于热循环会有更好的调谐效率。我们相信这种设计非常适合光与物质相互作用至关重要的应用,例如传感、粒子捕获、腔量子电动力学(CQED)以及具有外腔的III - V族/Si混合激光器。