Nanoscale
Advances
Lin Peng, Xiao-ming Li, Xiao Liu, Xing Jiang, Si-min Li
https://pubs.rsc.org/en/content/articlepdf/2019/na/c8na00149a?page=search
Terahertz electromagnetic (EM) wave absorbers are vital in photonics, however, they suffer from limited
bandwidth. A new approach for ultra-wideband (UWB) terahertz absorber design is proposed with metal
and graphene metasurfaces. The UWB characteristics are owing to three factors: (1) the metal
metasurface boosts the surface plasmon-polaritons (SPPs) of the graphene metasurface which leads to
confined field enhancement, (2) the merging and interaction of the resonances of the metal and
graphene metasurfaces, and (3) the multiple reflections and superpositions between the metasurfaces
and the gold layer. A prototype designed using a dual-ring metal metasurface, fishnet graphene
metasurface, polyimide substrate and gold reflecting layer is proposed. One cell of the prototype
includes one metal dual-ring unit and four graphene fishnet units. The proposed absorber has an UWB
bandwidth of 6.46 THz (145%) for absorptivity larger than 0.9, with a high octave of 6.21. The proposed
absorber is also insensitive to the polarization state and incident angle of the illuminating EM waves.
Besides, the amplitude modulation depth in the 5–6 THz band is up to 95.4%. The physical mechanisms
of the wideband operation are also discussed. The research in this work could offer a new thought for
UWB absorber design, and has potential applications in terahertz imaging, sensors, photodetectors and
modulators
A repository & source of cutting edge news about emerging terahertz technology, it's commercialization & innovations in THz devices, quality & process control, medical diagnostics, security, astronomy, communications, applications in graphene, metamaterials, CMOS, compressive sensing, 3d printing, and the Internet of Nanothings. NOTHING POSTED IS INVESTMENT ADVICE! REPOSTED COPYRIGHT IS FOR EDUCATIONAL USE.
Showing posts with label Si-min Li. Show all posts
Showing posts with label Si-min Li. Show all posts
Saturday, March 16, 2019
Wednesday, January 2, 2019
Abstract-Multi-functional Device with Switchable Functions of Absorption and Polarization Conversion at Terahertz Range
Lin Peng, Xing Jiang, Si-min Li,
https://nanoscalereslett.springeropen.com/articles/10.1186/s11671-018-2811-z
Terahertz electromagnetic (EM) wave components usually have a single function, such as they can only convert the polarization state of an incident wave or absorb the incident energy, which would be a limitation for their applications. To make a breakthrough, a multi-functional device (MFD) is proposed in this paper, and it is capable of switching between absorption mode and polarization conversion mode. The device has a low-profile and simple structure, and it is constructed by graphene-based absorbing metasurface (AM) and gold-based polarization conversion metasurface (PCM). By controlling the chemical potential (μc) of the graphene, the leading role is transferred between the AM and the PCM, which leads to steerable absorption and polarization conversion (PC) modes. For the PC mode, the simulated polarization conversion ratio (PCR) is larger than 0.9 in the 2.11–3.63-THz band (53.0% at 2.87 THz). For the absorption mode, the simulated absorptivity is larger than 80% in the 1.59–4.54-THz band (96.4% at 3.06 THz). The physical mechanisms and operating characteristics of the MFD are discussed. This research has potential applications in terahertz imaging, sensors, photodetectors, and modulators.
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