Perceived rotation angle and depth position of face-like illustrations with inverted concave depth positions in arc 3D display

Kawakita, M., Iwasawa, S., Sakai, M., Haino, Y., Sato, M.: 3D image quality of 200-inch glasses-free 3D display system. In: Proceedings Vol. 8288, Stereoscopic Displays and Applications XXIII (2012). https://doi.org/10.1117/12.912274

Tasaki, D., Nobori, H., Kohara, N., Iwabuchi, K., Kobayashi, M., Shimomura, S., Ichikawa, R., Nishiyama, T., Hara, S., Suyama, S., Ito, S., Nakayama, F., Tamada, J., Yamamoto, H.: Aerial prompter using AIRR that allows the performer and audience to see the script from two directions at the same time. Proc. DHIP 2023, 62 (2023)

Google Scholar 

Yamamoto, H., Tomiyama, Y., Suyama, S.: Floating aerial LED signage based on aerial imaging by retro-reflection (AIRR). Opt. Express 22, 26919–26924 (2014). https://doi.org/10.1364/OE.22.026919

Article  ADS  Google Scholar 

Hill, H., Johnston, A.: The hollow-face illusion: object-specific knowledge, general assumptions or properties of the stimulus? Perception 36, 199–223 (2007). https://doi.org/10.1068/p5523

Article  MATH  Google Scholar 

Suyama, S., Mizushina, H., Yamamoto, H.: Theoretical and experimental perceived depths in arc 3D displays: on/off switching using liquid-crystal active devices. IEEE Ind. Appl. Mag. 27(1), 69–81 (2021). https://doi.org/10.1109/MIAS.2020.3024451

Article  MATH  Google Scholar 

Plummer, J.W.T., Gardner, L.R.: A mechanically generated hologram? Appl. Opt. 31(31), 6585–6588 (1992). https://doi.org/10.1364/AO.31.006585m

Article  ADS  MATH  Google Scholar 

Daibo, M., Kobayashi, M., Machida, S., Kimura, M.: Three-dimensional display using arc shaped fine grooves. Bull. JSSD 46(1), 19–26 (1999)

Google Scholar 

Beaty, W.J.: Drawing holograms by hand. Proc. SPIE 5005, 156–167 (2003). https://doi.org/10.1117/12.478434

Article  ADS  MATH  Google Scholar 

Sato, S., Saji, I., Suyama, S., Yamamoto, H.: The blur width of the bright spot can be reduced by increasing the observation distance in the front projection of the arc 3D display. Proc. DHIP 2021, 22 (2021)

MATH  Google Scholar 

Saji, I., Miyai, N., Kashihara, Y., Hayashi, A., Suyama, S., Yamamoto, H.: Realization of interactive aerial buttons using a combination of arc 3D display and 3D sensors. Proc. IDW 28, 298–301 (2021)

Google Scholar 

Tamano, K., Suyama, S., Yamamoto, H.: Influence to underwater floating image in arc 3D display by material difference of arc 3D substrates. Proc. IDW 30, 495–498 (2023)

MATH  Google Scholar 

Oishi, H., Yasugi, M., Suyama, S., Yamamoto, H.: Change in long-range pop-up distance of arc 3D display due to substrate installation angle. Proc. IDW 29, 779–782 (2022)

MATH  Google Scholar 

Tamano, K., Suyama, S., Yamamoto, H.: Face rotation perception due to observer movement only by flat illustrations of face-like parts with inverted concave depth positions in arc 3D displays. In: Proc. LDC2024(The 13th Laser Display and Lightning Conference 2024), LDC16–05 (2024)

Comments (0)

No login
gif