Luo Jie, Chu Hongchen, Peng Ruwen, Wang Mu, Li Jensen, Lai Yun
School of Physical Science and Technology, Soochow University, Suzhou, 215006, China.
National Laboratory of Solid State Microstructures, School of Physics, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing, 210093, China.
Light Sci Appl. 2021 Apr 23;10(1):89. doi: 10.1038/s41377-021-00529-2.
The Brewster's law predicts zero reflection of p-polarization on a dielectric surface at a particular angle. However, when loss is introduced into the permittivity of the dielectric, the Brewster condition breaks down and reflection unavoidably appears. In this work, we found an exception to this long-standing dilemma by creating a class of nonmagnetic anisotropic metamaterials, where anomalous Brewster effects with independently tunable absorption and refraction emerge. This loss-independent Brewster effect is bestowed by the extra degrees of freedoms introduced by anisotropy and strictly protected by the reciprocity principle. The bandwidth can cover an extremely wide spectrum from dc to optical frequencies. Two examples of reflectionless Brewster absorbers with different Brewster angles are both demonstrated to achieve large absorbance in a wide spectrum via microwave experiments. Our work extends the scope of Brewster effect to the horizon of nonmagnetic absorptive materials, which promises an unprecedented wide bandwidth for reflectionless absorption with high efficiency.
布儒斯特定律预测,在特定角度下,电介质表面的p偏振光反射为零。然而,当电介质的介电常数引入损耗时,布儒斯特条件就会失效,反射不可避免地出现。在这项工作中,我们通过创建一类非磁性各向异性超材料找到了这个长期困境的一个例外,在这类超材料中出现了具有独立可调吸收和折射的反常布儒斯特效应。这种与损耗无关的布儒斯特效应是由各向异性引入的额外自由度赋予的,并受到互易原理的严格保护。带宽可以覆盖从直流到光频的极宽频谱。通过微波实验证明,两个具有不同布儒斯特角的无反射布儒斯特吸收器示例在宽频谱中均实现了高吸收率。我们的工作将布儒斯特效应的范围扩展到了非磁性吸收材料领域,有望实现前所未有的宽带高效无反射吸收。