论文标题
手性三维光子晶体的光学特性由半导体制成
Optical Properties of Chiral Three-Dimensional Photonic Crystals made from Semiconductors
论文作者
论文摘要
我们对直接和逆三维(3D)手性木架结构的光学特性以及相应的手性bragg堆栈进行了理论和数值研究。我们在螺旋方向上计算有限晶体和光子带结构的透射光谱,我们确保所有结构的有效索引都相同。我们发现,两个3D结构均表现出双波段圆形二色性,其中具有特定圆极化状态的光(左手或右手)揭示了一个宽阔的停止带,具有重大衰减,而另一个极化状态几乎没有受到阻碍。我们在不同的频率范围内观察到此类差距,并交替触手可及。圆形偏振间隙的外观通过物理模型成功解释,其中圆极化是与手性结构的共旋转或反式的,从而有效地导致了空间依赖性或恒定的屈光索引,从而导致了间隙的存在或不存在。我们发现,在3D直接和逆性手性木质木质晶体结构中,横向周期垂直于手性轴的横向周期来调节圆形极化间隙的存在或不存在。圆形二色性的可调性可能会发现用作圆形极化光线的片上传感器,并在芯片的片检测手性分子中。
We perform a theoretical and numerical study of the optical properties of both direct and inverse three-dimensional (3D) chiral woodpile structures, and a corresponding chiral Bragg stack. We compute transmission spectra in the helical direction for finite crystals, and photonic band structures, where we ensure the effective index of all structures to be the same. We find that both 3D structures show dual-band circular dichroism, where light with a particular circular polarization state - either left- or right-handed - reveals a broad stop band with major attenuation, whereas the other polarization state is transmitted nearly unimpeded. We observe such gaps in different frequency ranges, with alternating handedness. The appearance of the circular-polarized gaps is successfully interpreted with a physical model wherein the circular polarization either co-rotates or counter-rotates with the chiral structure, thereby effectively leading to a spatially-dependent or a constant refractive index, and thus to the presence or absence of a gap. We find that the presence or absence of circularly polarized gaps is tuned by the transverse periods perpendicular to the chiral axis in both the 3D direct and inverse chiral woodpile crystal structures. The tunability of circular dichroism may find applications as on-chip sensors for circularly polarized light and in the on-chip detection of chiral molecules.