Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.
Centre for Disruptive Photonic Technologies, The Photonics Institute, Nanyang Technological University, Singapore, 637371, Singapore.
Adv Mater. 2018 May;30(21):e1706696. doi: 10.1002/adma.201706696. Epub 2018 Apr 10.
The metal-dielectric stacks-based asymmetric Fabry-Perot (F-P) cavity systems have recently attracted much interest from the scientific community for realizing perfect absorption over the spectral bands from visible to infrared since they possess a lithography-free design that is cost-effective and scalable. This study experimentally demonstrates an asymmetric F-P cavity system for achieving tunable wide angle perfect absorption and phase singularity. The proposed system shows tunable multiband perfect absorption in the visible spectral region by incorporating an ultrathin layer of phase change material such as Ge Sb Te (GST) in the stack. The system shows multi-narrowband perfect absorption with a maximum of 99.8% at a specific incident angle and polarization state when the GST is in amorphous phase; however, the absorption bands blueshift and broaden after switching to the crystalline phase. More importantly, the proposed scheme shows tunable phase singularity at the reflection-less point. The obtained tunable perfect absorption and abrupt phase change are solely due to the presence of a highly absorbing ultrathin layer of GST in the stack. Experimental results are validated using an analytical simulation model based on a transfer matrix method. The proposed scheme could find potential applications in active photonic devices such as phase-sensitive biosensors and absorption filters.
基于金属-介质堆叠的非对称法布里-珀罗(F-P)腔系统因其具有免光刻、成本效益高和可扩展的设计,最近引起了科学界的广泛关注,可实现从可见光到红外光谱范围内的完美吸收。本研究通过实验演示了一种非对称 F-P 腔系统,用于实现可调谐宽角度完美吸收和相位奇点。通过在堆叠中加入一层超薄的相变材料(如 Ge Sb Te,GST),该系统在可见光谱区域实现了可调谐多波段完美吸收。当 GST 处于非晶相时,系统在特定入射角度和偏振状态下显示出多窄带完美吸收,最大吸收率可达 99.8%;然而,在切换到晶相后,吸收带会蓝移和展宽。更重要的是,所提出的方案在无反射点显示出可调谐的相位奇点。可调谐完美吸收和突然的相位变化仅归因于堆叠中存在高吸收的超薄 GST 层。实验结果通过基于转移矩阵方法的分析模拟模型进行验证。该方案可能在诸如相敏生物传感器和吸收滤波器等有源光子器件中具有潜在应用。