Li et al., 2014 - Google Patents
Precise intensity modulation in dynamic holographic 3D displayLi et al., 2014
- Document ID
- 12208352976636928873
- Author
- Li X
- Liu J
- Zhang Z
- Jia J
- Pan Y
- Wang Y
- Publication year
- Publication venue
- Imaging Systems and Applications
External Links
Snippet
Precise Intensity Modulation in Dynamic Holographic 3D Display Page 1 JTh1C.1.pdf Imaging
and Applied Optics © 2014 OSA Precise Intensity Modulation in Dynamic Holographic 3D
Display Xin Li, Juan Liu*, Zhao Zhang, Jia Jia, Yijie Pan, Yongtian Wang** Beijing Engineering …
- 230000000051 modifying 0 title abstract description 19
Classifications
-
- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ELECTROGRAPHY; HOLOGRAPHY
- G03H—HOLOGRAPHIC PROCESSES OR APPARATUS
- G03H1/00—Holographic processes or apparatus using light, infra-red or ultra-violet waves for obtaining holograms or for obtaining an image from them; Details peculiar thereto
- G03H1/22—Processes or apparatus for obtaining an optical image from holograms
- G03H1/2294—Addressing the hologram to an active spatial light modulator
-
- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ELECTROGRAPHY; HOLOGRAPHY
- G03H—HOLOGRAPHIC PROCESSES OR APPARATUS
- G03H1/00—Holographic processes or apparatus using light, infra-red or ultra-violet waves for obtaining holograms or for obtaining an image from them; Details peculiar thereto
- G03H1/04—Processes or apparatus for producing holograms
- G03H1/0402—Recording geometries or arrangements
- G03H2001/0421—Parallax aspect
- G03H2001/0423—Restricted parallax, e.g. horizontal parallax only holograms [HPO]
-
- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ELECTROGRAPHY; HOLOGRAPHY
- G03H—HOLOGRAPHIC PROCESSES OR APPARATUS
- G03H1/00—Holographic processes or apparatus using light, infra-red or ultra-violet waves for obtaining holograms or for obtaining an image from them; Details peculiar thereto
- G03H1/04—Processes or apparatus for producing holograms
- G03H1/08—Synthesising holograms, i.e. holograms synthesized from objects or objects from holograms
- G03H1/0808—Methods of numerical synthesis, e.g. coherent ray tracing [CRT], diffraction specific
- G03H2001/0833—Look up table
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Jia et al. | Reducing the memory usage for effectivecomputer-generated hologram calculation using compressed look-up table in full-color holographic display | |
Zhao et al. | Image quality enhancement via gradient-limited random phase addition in holographic display | |
Li et al. | Double-image encryption on joint transform correlator using two-step-only quadrature phase-shifting digital holography | |
Ma et al. | Influence of limited random-phase of objects on the image quality of 3D holographic display | |
Endo et al. | Computer-generated hologram calculation for real scenes using a commercial portable plenoptic camera | |
Pan et al. | Analytical brightness compensation algorithm for traditional polygon-based method in computer-generated holography | |
Zeng et al. | Off-axis phase-only holograms of 3D objects using accelerated point-based Fresnel diffraction algorithm | |
He et al. | Compact large size colour 3D dynamic holographic display using liquid crystal display panel | |
Symeonidou et al. | Three-dimensional rendering of computer-generated holograms acquired from point-clouds on light field displays | |
Zhang et al. | Optimizing double-phase method based on gradient descent algorithm with complex spectrum loss function | |
Li et al. | Precise intensity modulation in dynamic holographic 3D display | |
Xu et al. | Calculation of computer-generated hologram (CGH) from 3D object of arbitrary size and viewing angle | |
Tahara et al. | Algorithm for extracting multiple object waves without Fourier transform from a single image recorded by spatial frequency-division multiplexing and its application to digital holography | |
Chen et al. | Full-color and less-speckled modified Gerchberg–Saxton algorithm computer-generated hologram floating in a dual-parabolic projection system | |
Li et al. | Improved polygon-based method for subwavelength pixel pitch computer generated holograms | |
Chang et al. | Numerical study for the calculation of computer-generated hologram in color holographic 3D projection enabled by modified wavefront recording plane method | |
Li et al. | Color holographic display using a phase-only spatial light modulator | |
Wu et al. | Single-shot Fresnel incoherent correlation holography microscopy with two-step phase-shifting | |
Pang et al. | Image quality improvement of polygon computer generated holography | |
Zhang et al. | Lighting effects rendering in three-dimensional computer-generated holographic display | |
Li et al. | Experimental study of two-step phase-shifting digital holography based on the calculated intensity of a reference wave | |
Li et al. | Image encryption with two-step-only quadrature phase-shifting digital holography | |
Li et al. | Optimized dual spatial light modulators holographic display based on wavefront frequency decomposition | |
Kovachev et al. | Reconstruction of computer generated holograms by spatial light modulators | |
Nishitsuji et al. | Rapid calculation of computer-generated holograms for line-drawn 3D objects with varying thicknesses |