Digital Holographic Printing Methods for 3D Visualization of Cultural Heritage Artifacts
DOI:
https://doi.org/10.55630/dipp.2014.4.8Keywords:
igital holography, 3D imaging, holographic printingAbstract
Holography enables capture and reconstruction of the optical field scattered from three-dimensional (3D) objects. The hologram encodes both amplitude and phase of the field under coherent illumination, whereas photography records only the amplitude by incoherent light. 3D visualization feature of holography motivates expansion of research efforts dedicated to digital holographic imaging methods as a holographic display or a holographic printer. The paper presents two holographic 3D printing techniques which combine digital 3D representation of an object with analog holographic recording. Generation of digital contents is considered for a holographic stereogram printer and a recently proposed wavefront printer. These imaging methods could be applied to specific artifacts which are difficult to be recorded by conventional analog holography.References
Stoykova, E., Kang, H., Park, J., Twin-image problem in digital holography-a survey (Invited Paper), Chin. Opt. Lett. 12, 060013- (2014)
Sainov, V., Stoykova, E., Display Holography – Status and Future, Chapter in a book Optical Imaging and Metrology: Advanced Technologies, First Edition. Edited by Wolfgang Osten and Nadya Reingand. © 2012 Wiley-VCH Verlag GmbH & Co. KGaA., 93-117 (2012)
Yamaguchi, M, Ohyama, N, Honda, T, Holographic three-dimensional printer: new method, Appl. Opt. 31: 217-222 (1992)
Bjelkhagen H, Mirlis E. Color holography to produce highly realistic three-dimensional im-ages, Applied Optics, 47(4): A123-A133 (2008)
Kang, H., Stoykova, E., Park, J., Hong, S.H., Kim, Y., Holographic printing of white-light viewable holograms and stereograms, chapter 8, in Holography - Basic Principles and Con-temporary Applications, Ed. Emilia Mihaylova, ISBN 978-953-51-1117-7 (2013)
Brotherton-Ratcliffe D, Zacharovas S, Bakanas R, Pileckas J, Nikolskij A, Kuchin J., Digital holographic printing using pulsed RGB lasers, Optical Engineering; 50(9): 091307- 091307-9 (2011)
Park, J., Stoykova, E., Kang, H., Hong, S., Lee, S., Jung, K., Numerical reconstruction of full parallax holographic stereograms, 3D Research 03, 03: 6 (2012)
Stoykova, E, Harizanova, J., Sainov,V., Pattern projection profilometry for 3D coordinates measurement of dynamic scenes, Chapter in the book “Three-dimensional television”, Springer, H.-M. Ozaktas, L.Onural, Eds., 85-164 (2008)
Yamaguchi, T., Miyamoto, O., Yoshikawa, H., Volume hologram printer to record the wavefront of three-dimensional objects, Opt.Eng. 51 (7), 075802 (2012)
Kang, H., Stoykova, E., Wave-field recording onto a holographic emulsion, Proc. Second Japan-Korea Workshop on Digital Holography and Information Photonics (2012)
Kang, H., Stoykova, E., Yoshikawa, H., Hong, S., Kim, Y., Comparison of system properties for wavefront holographic printers, Fringe 2013, W. Osten (ed.), Springer-Verlag Berlin Heidelberg (2014)
Kang, H., Stoykova, E., Partitioning based fast digital hologram generation method, Proc. Third Korea-Japan workshop on digital holography and information photonics (2013)