Chen Yihang
Laboratory of Quantum Information Technology, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou, China.
Opt Express. 2010 Sep 13;18(19):19920-9. doi: 10.1364/OE.18.019920.
The properties of the phase shift of wave reflected from one-dimensional photonic crystals consisting of periodic layers of single-negative (permittivity- or permeability-negative) materials are demonstrated. As the incident angle increases, the reflection phase shift of TE wave decreases, while that of TM wave increases. The phase shifts of both polarized waves vary smoothly as the frequency changes across the photonic crystal stop band. Consequently, the difference between the phase shift of TE and that of TM wave could remain constant in a rather wide frequency range inside the stop band. These properties are useful to design wave plate or retarder which can be used in wide spectral band. In addition, a broadband photonic crystal quarter-wave plate is proposed.
展示了由单负(介电常数或磁导率为负)材料的周期性层组成的一维光子晶体反射波的相移特性。随着入射角的增加,TE波的反射相移减小,而TM波的反射相移增加。当频率在光子晶体禁带范围内变化时,两种偏振波的相移都平滑变化。因此,在禁带内相当宽的频率范围内,TE波和TM波的相移之差可以保持恒定。这些特性对于设计可在宽光谱带中使用的波片或延迟器很有用。此外,还提出了一种宽带光子晶体四分之一波片。