Pourmand M, Choudhury P K, Mohamed Mohd Ambri
Institute of Microengineering and Nanoelectronics, Universiti Kebangsaan Malaysia, UKM, 43600, Bangi, Selangor, Malaysia.
Sci Rep. 2021 Feb 11;11(1):3603. doi: 10.1038/s41598-021-83304-y.
Investigation was made of the optical response of metal-dielectric stacks-based cavity structures embedded with graphene microheaters for the purpose of perfect absorption. The absorber configuration exploits the GeSbTe (GST) phase changing medium, and the effects of different parametric and operational conditions on the absorption spectra were explored. The refractive indices of GST layers can be manipulated by the external electrical pulses applied to microheaters. The amplitude and duration of electrical pulses define the crystallinity ratio of the used GST mediums. The results revealed achieving perfect absorption (> 99%) in the visible and infrared (IR) regimes of the electromagnetic spectrum upon incorporating two thin GST layers of different thicknesses (in the stack) in the amorphous state. The proposed configuration showed the capability of introducing independent transition state (amorphous and/or crystalline) for each GST layer-the visible regime could be extended to the IR regime, and the perfect absorption peak in the IR regime could be broadened and red-shifted. It is expected that the structure would find potential applications in active photonic devices, infrared imaging, detectors and tunable absorbers.
为实现完美吸收,对嵌入石墨烯微加热器的基于金属 - 电介质堆叠的腔结构的光学响应进行了研究。该吸收器配置利用了锗锑碲(GST)相变介质,并探索了不同参数和操作条件对吸收光谱的影响。GST层的折射率可通过施加到微加热器的外部电脉冲来操纵。电脉冲的幅度和持续时间定义了所用GST介质的结晶度比。结果表明,在堆叠中包含两个不同厚度的非晶态薄GST层时,在电磁光谱的可见光和红外(IR)波段可实现完美吸收(> 99%)。所提出的配置显示出为每个GST层引入独立转变状态(非晶态和/或晶态)的能力——可见光波段可扩展到红外波段,并且红外波段的完美吸收峰可拓宽并红移。预计该结构将在有源光子器件、红外成像、探测器和可调谐吸收器中找到潜在应用。