Materials Sciences Division, Lawrence Berkeley National Laboratory , Berkeley, California 94720, United States.
Department of Physics, Florida State University , Tallahassee, Florida 32306, United States.
Nano Lett. 2015 Oct 14;15(10):6909-13. doi: 10.1021/acs.nanolett.5b02839. Epub 2015 Sep 17.
Periodic structures with dimensions on the order of the wavelength of light can tailor and improve the performance of optical components, and they can enable the creation of devices with new functionalities. For example, distributed Bragg reflectors (DBRs), which are created by periodic modulations in a structure's dielectric medium, are essential in dielectric mirrors, vertical cavity surface emitting lasers, fiber Bragg gratings, and single-frequency laser diodes. This work introduces nanoscale DBRs integrated directly into gallium nitride (GaN) nanowire waveguides. Photonic band gaps that are tunable across the visible spectrum are demonstrated by precisely controlling the grating's parameters. Numerical simulations indicate that in-wire DBRs have significantly larger reflection coefficients in comparison with the nanowire's end facet. By comparing the measured spectra with the simulated spectra, the index of refraction of the GaN nanowire waveguides was extracted to facilitate the design of photonic coupling structures that are sensitive to phase-matching conditions. This work indicates the potential to design nanowire-based devices with improved performance for optical resonators and optical routing.
周期性结构的尺寸与光的波长相当,可以调整和改善光学元件的性能,并且可以实现具有新功能的器件的创建。例如,通过在结构的介电介质中周期性调制而产生的分布式布拉格反射器(DBR)对于介电镜、垂直腔面发射激光器、光纤布拉格光栅和单频激光二极管至关重要。这项工作介绍了直接集成在氮化镓(GaN)纳米线波导中的纳米级 DBR。通过精确控制光栅的参数,证明了在整个可见光谱范围内可调谐的光子带隙。数值模拟表明,与纳米线的端面相比,DBR 在光纤内具有显著更高的反射系数。通过将测量的光谱与模拟的光谱进行比较,提取了 GaN 纳米线波导的折射率,以方便设计对相位匹配条件敏感的光子耦合结构。这项工作表明,有潜力设计基于纳米线的器件,以提高光学谐振器和光路由的性能。