2D photonic-crystal-type surface relief grating for light with an azimuth angle

IF 1.1 4区 物理与天体物理 Q4 OPTICS
Fu-Li Hsiao, Chien-Teng Lin, Yen-Tung Yang, Yi-Chia Huang, Li-Chuan Yu, Ying-Pin Tsai
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Abstract

With the development of virtual reality, the projection design of the head-mounted display (HMD) requires improvement as well. The surface relief grating (SRG) is one of the popular diffraction elements to achieve light guiding through the waveguide. Using the SRG as the coupler, incoming information light can be coupled into the waveguide by the 1-order diffraction. To increase possible design options for the HMD, SRG with complex geometry has been designed to fit more diffraction conditions. In this paper, a 2D SRG is proposed to form by periodically arranging slanted glass pillars on the surface of a glass waveguide, just like a photonic crystal. The structure can suppress all the other diffraction orders except the 0-order and the [1, 0] order. The best diffraction efficiency of the [1, 0] order can be obtained when the incident light is incident with not only an incident angle but also an azimuth angle. The geometric parameters of the pillars are investigated and optimized with the diffraction efficiency by the finite element method, and the relationship between the incident angles and the diffraction efficiency will also be discussed. The proposed structure has the potential in both the in-coupler and the out-coupler, respectively, for integrating light coming from different azimuth angles or for outputting light to different azimuth angles.

Abstract Image

二维光子晶体型表面浮雕光栅,适用于具有方位角的光线
随着虚拟现实技术的发展,头戴式显示器(HMD)的投影设计也需要改进。表面浮雕光栅(SRG)是实现波导导光的常用衍射元件之一。使用 SRG 作为耦合器,传入的信息光可以通过一阶衍射耦合到波导中。为了增加 HMD 的设计选项,人们设计了具有复杂几何形状的 SRG,以适应更多的衍射条件。本文提出了一种二维 SRG,通过在玻璃波导表面周期性地排列斜玻璃柱来形成,就像光子晶体一样。该结构可以抑制除 0 阶和 [1, 0] 阶之外的所有其他衍射阶。当入射光不仅以入射角而且以方位角入射时,[1,0] 阶的衍射效率最佳。通过有限元法,研究并优化了光柱的几何参数与衍射效率,并讨论了入射角与衍射效率之间的关系。所提出的结构在入射耦合器和出射耦合器中都具有潜力,可分别用于整合来自不同方位角的光或向不同方位角输出光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Optical Review
Optical Review 物理-光学
CiteScore
2.30
自引率
0.00%
发文量
62
审稿时长
2 months
期刊介绍: Optical Review is an international journal published by the Optical Society of Japan. The scope of the journal is: General and physical optics; Quantum optics and spectroscopy; Information optics; Photonics and optoelectronics; Biomedical photonics and biological optics; Lasers; Nonlinear optics; Optical systems and technologies; Optical materials and manufacturing technologies; Vision; Infrared and short wavelength optics; Cross-disciplinary areas such as environmental, energy, food, agriculture and space technologies; Other optical methods and applications.
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