Yeom Jiwoon, Jeong Jinsoo, Jang Changwon, Li Gang, Hong Keehoon, Lee Byoungho
Appl Opt. 2015 Oct 20;54(30):8856-62. doi: 10.1364/AO.54.008856.
We propose a 3D/2D convertible screen using a holographic optical element and angular multiplexing method of volume hologram. The proposed screen, named a multiplexed holographic optical element screen (MHOES), is composed of passive optical components, and displaying modes between 3D and 2D modes are converted according to projection directions. In a recording process, the angular multiplexing method by using two reference waves with different incidence angles enables the functions of 3D and 2D screens to be recorded in a single holographic material. Also, in order to avoid the bulky experimental setup due to adopting different projectors for the 3D and 2D modes, the projection part is realized based on a prism. The designed projection part enables the single projector to present 3D on 2D mode, where the 3D and 2D contents are simultaneously displayed in one scene, without active components. The optical characteristics of MHOES are experimentally analyzed, and displaying experiments with a full-color MHOES are presented in order to verify the 3D/2D convertibility and see-through properties.
我们提出了一种使用全息光学元件和体全息图角度复用方法的3D/2D可转换屏幕。所提出的屏幕名为复用全息光学元件屏幕(MHOES),由无源光学元件组成,并且根据投影方向在3D模式和2D模式之间进行显示模式转换。在记录过程中,通过使用具有不同入射角的两个参考波的角度复用方法,能够将3D和2D屏幕的功能记录在单一全息材料中。此外,为了避免由于为3D和2D模式采用不同投影仪而导致实验装置庞大,投影部分基于棱镜实现。所设计的投影部分使单个投影仪能够在2D模式下呈现3D,其中3D和2D内容在一个场景中同时显示,无需有源组件。对MHOES的光学特性进行了实验分析,并展示了使用全彩色MHOES的显示实验,以验证3D/2D可转换性和透视特性。