Title :
A Holographic Projection System With an Electrically Adjustable Optical Zoom and a Fixed Location of Zeroth-Order Diffraction
Author :
Ming-Syuan Chen ; Collings, N. ; Hung-Chun Lin ; Yi-Hsin Lin
Author_Institution :
Dept. of Photonics, Nat. Chiao Tung Univ., Hsinchu, Taiwan
Abstract :
An electrically tunable optical zooming holographic projection system with a fixed location of zeroth-order diffraction is demonstrated. By using two liquid lenses and an encoded Fresnel lens on a liquid crystal on silicon (LCoS) panel, the size of the projected image of the holographic projection system is changeable; meanwhile, the locations of both of the zeroth-order diffraction and the first-order diffraction are unchanged. Therefore, the zeroth-order diffraction can be removed by using a fixed optical high-pass filter. We can use it to realize an image size matching system for green light (532 nm) and red light (632.8 nm) without any positional motion of the optical elements. The optical zoom function enhances the feasibility to realize a high-resolution full-color holographic projection system.
Keywords :
Fresnel diffraction; colour displays; holographic displays; holographic optical elements; image matching; lenses; liquid crystal on silicon; LCoS panel; electrically tunable optical zooming; encoded Fresnel lens; green light; high resolution full color holographic projection system; image size matching system; liquid crystal on silicon; liquid lenses; red light; wavelength 532 nm; wavelength 632.8 nm; zeroth-order diffraction; Diffraction; Holography; Lenses; Liquids; Optical diffraction; Optical filters; Optical imaging; Holographic projection; liquid lens;
Journal_Title :
Display Technology, Journal of
DOI :
10.1109/JDT.2014.2303132