Cao Tun, Wei Chenwei, Simpson Robert E, Zhang Lei, Cryan Martin J
Department of Biomedical Engineering, Dalian University of Technology, China(P.R.C).
Singapore University of Technology and Design (SUTD), 20 Dover Drive, Singapore.
Sci Rep. 2014 Mar 25;4:4463. doi: 10.1038/srep04463.
In this work, we numerically demonstrate an all-optical tunable Fano resonance in a fishnet metamaterial(MM) based on a metal/phase-change material(PCM)/metal multilayer. We show that the displacement of the elliptical nanoholes from their centers can split the single Fano resonance (FR) into a double FR, exhibiting higher quality factors. The tri-layer fishnet MMs with broken symmetry accomplishes a wide tuning range in the mid-infrared(M-IR) regime by switching between the amorphous and crystalline states of the PCM (Ge2Sb2Te5). A photothermal model is used to study the temporal variation of the temperature of the Ge2Sb2Te5 film to show the potential for switching the phase of Ge2Sb2Te5 by optical heating. Generation of the tunable double FR in this asymmetric structure presents clear advantages as it possesses a fast tuning time of 0.36 ns, a low pump light intensity of 9.6 μW/μm(2), and a large tunable wavelength range between 2124 nm and 3028 nm. The optically fast tuning of double FRs using phase change metamaterials(PCMMs) may have potential applications in active multiple-wavelength nanodevices in the M-IR region.
在这项工作中,我们通过数值模拟展示了一种基于金属/相变材料(PCM)/金属多层结构的渔网超材料(MM)中的全光可调谐法诺共振。我们表明,椭圆形纳米孔相对于其中心的位移可将单个法诺共振(FR)分裂为双法诺共振,呈现出更高的品质因数。具有对称性破缺的三层渔网超材料通过在PCM(Ge2Sb2Te5)的非晶态和晶态之间切换,在中红外(M-IR)波段实现了宽调谐范围。利用光热模型研究了Ge2Sb2Te5薄膜温度的时间变化,以展示通过光加热切换Ge2Sb2Te5相的潜力。在这种不对称结构中产生可调谐双法诺共振具有明显优势,因为它具有0.36 ns的快速调谐时间、9.6 μW/μm²的低泵浦光强度以及2124 nm至3028 nm的大可调谐波长范围。利用相变超材料(PCMMs)对双法诺共振进行光学快速调谐可能在M-IR区域的有源多波长纳米器件中具有潜在应用。