• Title/Summary/Keyword: Holographic display

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Acoustooptical Approach for Moving Scene Holography

  • Petrov, Vladimir
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.451-462
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    • 2003
  • At the paper the method of 3D holographic moving image reconstruction is discused. The main idea of this method is based on the substitution of optically created static hologram by equal diffraction array created by acoustical (AO) field which formed by bulk sound waves. Such sound field can be considered as dynamic optical hologram, which is electrically controlled. At the certain moment of time when the whole hologram already formed, the reference optical beam illuminates it, and due to acoustooptical interaction the original optical image is reconstructed. As the acoustically created dynamic optical hologram is electronically controlled, it can be used for moving 3-dimentional scene reconstruction in real time. The architecture of holographic display for moving scene reconstruction is presented at this paper. The calculated variant of such display laboratory model is. given and discussed. The mathematical simulation of step by step images recording and reconstruction is given. The pictures of calculated reconstructed images are presented. The prospects, application areas, shortcomings and main problems are discussed.

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Multiview Stereoscopic Display based on Volume Holographic Memory (체적 홀로그래픽 메모리를 이용한 다시점 스테레오스코픽 디스플레이)

  • 이승현;손광철;심원섭;양훈기;김은수
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.25 no.5A
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    • pp.688-695
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    • 2000
  • We present a multi-view autostereoscopic display system based on volume holographic storage technique. In this proposed system, the interference pattern of spatial multiplexed plane reference and angular multiplexed plane object beams are recorded into a photorefractive crystal, which plays a role of guiding object beams of multi-view images into the desired persfective directions. For reconstruction, object beams containing the desired multi-view image information, which satisfy Bragg matching condition, are illuminated in the time-division multiplexed manner onto the crystal. Then multiple stereoscopic images are Projected to the display plane for autostereoscopic 3D viewing.

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ATTEST to MUTED - Problems, Answers, and the Evolution of a Multiple Mobile Viewer Autostereoscopic Display

  • Sexton, Ian;Buckley, Edward
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1807-1810
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    • 2007
  • The evolution of a multi viewer autostereoscopic display is described. Development of the display was originally a part of the EC funded 'ATTEST' project and continues as another EC project 'MUTED'. The design of the original display is presented and the limitations of the prototype are described. The current iteration of the design is presented.

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Wavefront 3D Reconstruction and Measurement for Natural 3D Display System

  • Matoba, Osamu;Nitta, Kouichi;Awatsuji, Yasuhiro
    • 한국정보디스플레이학회:학술대회논문집
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    • 2008.10a
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    • pp.935-938
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    • 2008
  • Three-dimensional (3D) display systems based on wavefront reconstruction are presented. To obtain the wavefront of 3D objects, we present holographic recording using temporally or spatially phase-shifting interferometer. In the 3D display systems, phase-only reconstruction using a spatial light modulator and an approach to increase the reconstructed power are presented.

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Optical Implementation of Incoherent Holographic 3D Display System using Modified Triangular and Mach-Zehender Interferometer (변형된 삼각 및 마하젠더 간섭계 기반의 인코히어런트 홀로그래픽 3D 디스플레이 시스템의 광학적 구현)

  • 김승철;구정식;김은수
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.4C
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    • pp.524-532
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    • 2004
  • In this paper, an incoherent holographic 3D imaging and display system based on the modified triangular and Mach-Zehnder interferometers is optically implemented and some experiments are carried out. Incoherent hologram of a 3D object is generated by using the hologram input system of modified triangular interferometer. Then this complex hologram is reconstructed by using the hologram output system of modified Mach-Zehnder interferometer in which two LCD spatial light modulators and a waveplate are inserted. From the experiment with two point sources having a depth difference of 100 mm each other, it is revealed that each point source can be independently reconstructed at its own focal position from the complex hologram, while both of the bias and conjugate image are simultaneously eliminated at the same time. And in the experiment with the real 3D object of two dices having a depth difference of 30 mm each other, it is also conformed that the bias and conjugate image can be effectively eliminated from the hologram pattern and each 3D dice can be also successfully reconstructed at its own focal position from the complex hologram. These experiment results finally suggest a possibility of implementing a new incoherent holographic 3D imaging and display system using the modified triangular and Mach-Zehender interferometers.

Design and testing large FOV retinal displays on the basis holographic combiner

  • Gan, Mikhail A.;Gan, Iacov M.;Tchertkov, Alexander S.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2004.08a
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    • pp.442-445
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    • 2004
  • We report principles and results of design large FOV retinal display systems by software WinDEMOS and software for computer testing display systems TEDiS. We discuss results design head mounted and head up display. As combiner we are used volume interference recorded or synthetic HOE, and as the sours of the image high resolution transmitting or reflective liquid crystal matrixes on silicon (LCOS) or CRT.

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Three-dimensional Holographic Display with Twin Image Noise Rejection Using Off-axis Hologram Converting (탈 축 홀로그램 합성을 이용한 쌍 영상 잡음 제거와 3차원 홀로그램 디스플레이)

  • Kim, You-Seok;Kim, Tae-Geun;Kim, Jin-Tae
    • Korean Journal of Optics and Photonics
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    • v.20 no.6
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    • pp.328-333
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    • 2009
  • We proposed a three-dimensional holographic display technique without twin image noise by converting a complex hologram to an off-axis hologram. To implement the proposed technique we record the complex hologram of a three dimensional object that is composed of two slides located with different depth locations. We added spatial carrier to the complex hologram and after that, extract the real part of the spatial-carrier-added hologram. This converts the complex hologram to an off-axis hologram. We also reconstruct the off-axis hologram using a spatial light modulator for three dimensional display.