Session Details

[3Dp1]3D/Hyper-realistic Displays and Applications

Thu. Dec 4, 2025 11:10 AM - 12:30 PM JST
Thu. Dec 4, 2025 2:10 AM - 3:30 AM UTC
Conf. Management Room (Poster-3)

[3Dp1-01]Comparison of Modulation Methods for Generating Complex Holograms from Amplitude Holograms Using Optimization Calculations

*Shun Nishijima1, Kosuke Mori1, Kazuma Mori1, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan))
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[3Dp1-02]Fast Single-Step Fresnel Diffraction with Minimized Size Change on GPU

*Kazuma Mori1, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan))
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[3Dp1-03]Angular-Multiplexing-Based Multi-Image Encryption for Holographic Display

*Chih-Hao Chuang1, Yi-San Liu1, Hong-Yi Chien1, Nehemiah Chuan-Feng Kuo2, Hsuan-Ting Chang3 (1. Feng Chia University (Taiwan), 2. National Taiwan University (Taiwan), 3. National Yunlin University of Science and Technology (Taiwan))
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[3Dp1-04]Angular Filter for Computer-Generated Hologram Based on Volume Holographic Grating

*Chun Kuan Lee1, Shao Kui Zhou1, Wen Kai Lin2, Wei Chia Su1 (1. National Changhua University of Education (Taiwan), 2. Feng Chia University (Taiwan))
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[3Dp1-05]Full-Color Holographic Waveguide Display with Hybrid Multiplex Recording

*Lin Xin Ru1, Lin Wen Kai2, Zhou Shao Kui1, Su Wei Chia1, Sun Ching Cherng3 (1. National Changhua University of Education (Taiwan), 2. Feng Chia University (Taiwan), 3. National Central University (Taiwan))
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[3Dp1-06]Virtual Viewpoint Reconstruction Utilizing Monocular Images with Complex Backgrounds

*Yiming Zhao1, Jian Zhao2,1 (1. Nanjing Institute of Technology (China), 2. Southeast University (China))
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[3Dp1-07]Study on the Parallelization of the FFT Module for the Holographic Special-Purpose Computer Using Orthographic Ray-Wavefront Conversion

*Itsuki Karube1,2, Yasuyuki Ichihashi1,2, Fan Wang1, Tomoyoshi Shimobaba1, Tomoyoshi Ito1 (1. Chiba University (Japan), 2. National Institute of Information and Communications Technology (Japan))
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[3Dp1-08]Near-Eye Display with 80-Degree FOV Based on Multilayer Volume Holographic Lightguide

*Yi-Chen Liu1, Ying-Pin Tsai1, Wen-Kai Lin2, Shao-Kui Zhou1, Wei-Chia Su1 (1. National Changhua University of Education (Taiwan), 2. Feng Chia University (Taiwan))
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[3Dp1-09]Angular-Multiplexed Master FOV Hologram Based on Multilayer Holographic Films

*Yun-Ting Lo1, Ying-Pin Tsai1, Wen-Kai Lin2, Shao-Kui Zhou1, Wei-Chia Su1 (1. National Changhua University of Education (Taiwan), 2. Feng Chia University (Taiwan))
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[3Dp1-10]Viewing Zone Design Independent of Rotational Misalignment Between Parallax Barrier and Display

*Taemyong Shin1, Kyosuke Yanagida1, Takafumi Koike1,3, Ken Mashitani, Goro Hamagishi2,3, Hideya Takahashi2,3 (1. Hosei University (Japan), 2. Osaka Metropolitan University (Japan), 3. RealImage Inc (Japan))
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[3Dp1-11L]Concave Ellipsoidal Mirror toward 360° Horizontal Viewing Angle in Holographic 3D Display

*Yusuke Sando1, Yutaro Goto1, Daisuke Barada2, Toyohiko Yatagai2 (1. Osaka Research Institute of Industrial Science and Technology (Japan), 2. Utsunomiya University (Japan))
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[3Dp1-12L]Image Quality Enhancement for Directional Volumetric Display Using Wasserstein GAN with Gradient Penalty

*Mitsuru Baba1, Shino Shiraki2, Tomoyoshi Shimobaba1, Tomoyoshi Ito1, Atushi Shiraki1 (1. Chiba University (Japan), 2. Tokyo Metropolitan University (Japan))
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[3Dp1-13L]Analyses of in Line Grating Period in a Waveguide Display System with 2D Exit Pupil Expansion

*Chan Tsung Han1 (1. National Changhua University of Education (Taiwan))
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[3Dp1-14L]Withdrawn

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[3Dp1-15L]Wide-FOV, High-Resolution Self-Interference Holographic Microscope Using Geometric-Phase Holographic Lens for Optical Characterization of a Metalenses

*kidong Lim1, Tae-Hyun Lee1,2, Jiyeon Kim1,3, Jung Hun Choo1, Dongkil Lee1, Kyung-Il Joo1, Min-Kyu Park1, Hak-Rin Kim2, Sungjin Lim1 (1. Korea Photonics Technology Institute (Korea), 2. Kyungpook National University (Korea), 3. Jeonbuk National University (Korea))
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[3Dp1-16L]Geometric-Phase Meta-Wavefront Printing System for Fabrication of Freeform Optical Element with Large Aperture

*Sungjin Lim1, Tae-Hyun Lee1,2, Jiyeon Kim1,3, Kidong Lim1, Jung Hun Choo1, Dongkil Lee1, Min-Kyu Park1, Kyung-Il Joo1, Hak-Rin Kim2 (1. Korea Photonics Technology Institute (Korea), 2. Kyungpook National University (Korea), 3. Jeonbuk National University (Korea))
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[3Dp1-17L]Proposal for Two-layer Aerial Image Display

*Takehiro Kaneko1, Yasuhiro Takaki1 (1. Tokyo University of Agriculture and Technology (Japan))
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[3Dp1-18L]Accelerating GPU Computation of Phase-Type Computer-Generated Hologram Using SYCL Code Migrated from CUDA

*Takumi Ito1, Hashizo Hamada1, Boaz Jessie Jackin1, Harutaka Shiomi1, Naoki Takada1 (1. Kochi University (Japan))
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[3Dp1-20L]Rotation Perception by Changing Observation Position for a Face-Like Image with Inverted Concave Depth in Underwater Arc 3D Display

*Kensuke Tamano1, Shiro Suyama1, Hirotsugu Yamamoto1 (1. Utsunomiya University (Japan))
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[3Dp1-21L]A Preliminary Study on Preserving Text Shapes in Diffusion Based Stereoscopic Video Generation from Monocular Images

*Kyosuke Yanagida1, Takafumi Koike1,2 (1. Hosei University (Japan), 2. RealImage Inc. (Japan))
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