Liu Zhengqi, Zhang Houjiao, Liu Xiaoshan, Pan Pingping, Liu Yi, Tang Li, Liu Guiqiang
Nanotechnology. 2017 Jun 9;28(23):235202. doi: 10.1088/1361-6528/aa6f8a.
Metal films with broadband optical transparency are desirable in many optoelectronic devices, such as displays, smart windows, light-emitting diodes and infrared detectors. As bare metal is opaque to light, this issue of transparency attracts great scientific interest. In this work, we proposed and demonstrated a feasible and universal approach for achieving broadband optical transparent (BOT) metals by utilizing all-dielectric resonant cavities. Resonant dielectrics provide optical cavity modes and couple strongly with the surface plasmons of the metal film, and therefore produce a broadband near-unity optical transparent window. The relative enhancement factor (EF) of light transmission exceeds 3400% in comparison with that of pure metal film. Moreover, the transparent metal motif can be realized by other common metals including gold (Au), silver (Ag) and copper (Cu). These optical features together with the fully retained electric and mechanical properties of a natural metal suggest that it will have wide applications in optoelectronic devices.
具有宽带光学透明性的金属薄膜在许多光电器件中都很有需求,例如显示器、智能窗户、发光二极管和红外探测器。由于裸金属对光不透明,这种透明性问题引起了极大的科学兴趣。在这项工作中,我们提出并展示了一种可行且通用的方法,通过利用全介质谐振腔来实现宽带光学透明(BOT)金属。谐振电介质提供光学腔模并与金属薄膜的表面等离子体强烈耦合,从而产生一个宽带近单位光学透明窗口。与纯金属薄膜相比,光传输的相对增强因子(EF)超过3400%。此外,透明金属图案可以通过包括金(Au)、银(Ag)和铜(Cu)在内的其他常见金属来实现。这些光学特性以及天然金属完全保留的电学和力学性能表明,它将在光电器件中具有广泛的应用。