Department of Electrical and Computer Engineering, ‡Materials Research Laboratory and Department of Chemistry and Biochemistry, University of California , Santa Barbara, California 93106, United States.
Nano Lett. 2017 Jun 14;17(6):3940-3945. doi: 10.1021/acs.nanolett.7b01529. Epub 2017 Jun 5.
Subwavelength Mie resonators have enabled new classes of optical antenna and nanophotonic devices and can act as the basic meta-atom constituents of low-loss dielectric metasurfaces. In any application, tunable Mie resonances are key to achieving a dynamic and reconfigurable operation. However, the active tuning of these nanoantennas is still limited and usually results in sub-linewidth resonance tuning. Here, we demonstrate the ultrawide dynamic tuning of PbTe Mie resonators fabricated via both laser ablation and a novel solution-processing approach. Taking advantage of the extremely large thermo-optic (TO) coefficient and a high refractive index of PbTe, we demonstrate high-quality factor Mie resonances that are tuned by several linewidths with temperature modulations as small as ΔT ∼ 10 K. We reveal that the origin for this exceptional tunability is due to an increased TO coefficient of PbTe at low temperatures. When combined into metasurface arrays, these effects can be exploited in ultranarrow active notch filers and metasurface phase shifters that require only a few kelvin modulation. These findings demonstrate the enabling potential of PbTe as a versatile, solution-processable, and highly tunable nanophotonic material that suggests new possibilities for meta-atom paints, coatings, and 3D metamaterials fabrication.
亚波长米氏谐振器使新型光学天线和纳米光子器件成为可能,并可作为低损耗介电超材料表面的基本亚单元组成部分。在任何应用中,可调谐的米氏谐振都是实现动态和可重构操作的关键。然而,这些纳米天线的主动调谐仍然受到限制,通常导致亚波长线宽的谐振调谐。在这里,我们通过激光烧蚀和一种新的溶液处理方法展示了 PbTe 米氏谐振器的超宽动态调谐。利用 PbTe 极高的热光(TO)系数和折射率,我们演示了高质量因子的米氏谐振,其通过温度调制可实现几个线宽的调谐,调谐温度仅为 ΔT ∼ 10 K。我们揭示了这种优异的调谐能力源于低温下 PbTe 的 TO 系数增加。当组合成超材料阵列时,这些效应可用于超窄带主动陷波滤波器和超材料相移器,它们仅需要几开尔文的调制。这些发现表明 PbTe 作为一种通用的、溶液处理的、高度可调谐的纳米光子材料具有很大的潜力,为元原子涂料、涂层和 3D 超材料的制造提供了新的可能性。