査読付き論文

  1. Teruyoshi Nobukawa, Daisuke Barada, Takanori Nomura, and Takashi Fukuda, "Orthogonal polarization encoding for reduction of interpixel cross talk in holographic data storage," Opt. Express 25, 22425-22439 (2017)
  2. Takahiro Kitazawa and Takanori Nomura, “Refractive index tomography based on optical coherence tomography and tomographic reconstruction algorithm,” Jpn. J. Appl. Phys. 56, 09NB03 (6 pages) (2017).
  3. Teruyoshi Nobukawa and Takanori Nomura, “Correlation-Based Multiplexing of Complex Amplitude Data Pages in a Holographic Storage System Using Digital Holographic Techniques,” Polymers 9, 375 (13 pages) (2017).
  4. Takanori Nomura and Kazuma Shinomura, "Generalized sequential four-step phase-shifting color digital holography," Appl. Opt. 56, 6851-6854 (2017).
  5. Koshi Komuro and Takanori Nomura, "Object plane detection and phase-amplitude imaging based on transport of intensity equation,” Opt. Rev. 24, 626-633 (2017).
  6. Kaho Watanabe and Takanori Nomura, "Spatially incoherent Fourier digital holography by four-step phase-shifting rotational shearing interferometer and its image quality,” Opt. Rev. 24, 351-360 (2017).
  7. Osamu Matoba, Xiangyu Quan, Peng Xia, Yasuhiro Awatsuji, and Takanori Nomura, “Multimodal Imaging Based on Digital Holography,” Proc. IEEE 105, 906-923 (2017).
  8. Teruyoshi Nobukawa and Takanori Nomura, “Shift multiplexing with a spherical wave in holographic data storage based on a computer-generated hologram,” Appl. Opt. 56, F31-F36 (2017).
  9. Teruyoshi Nobukawa and Takanori Nomura, “Digital super-resolution holographic data storage based on Hermitian symmetry for achieving high areal density,” Opt. Express 25, 1326-1338 (2017).
  10. Teruyoshi Nobukawa, Takashi Fukuda, Daisuke Barada, and Takanori Nomura, “Coaxial polarization holographic data recording on a polarization-sensitive medium,” Opt. Lett. 41, 4919-4922 (2016).
  11. Teruyoshi Nobukawa and Takanori Nomura, “Multilevel recording of complex amplitude data pages in a holographic data storage system using digital holography,” Opt. Express 24, 21001-21011 (2016).
  12. Hironobu Shinto, Yusuke Saita, and Takanori Nomura, "Shack–Hartmann wavefront sensor with large dynamic range by adaptive spot search method," Appl. Opt. 55, 5413-5418 (2016).
  13. Koshi Komuro and Takanori Nomura, "Quantitative phase imaging using transport of intensity equation with multiple bandpass filters," Appl. Opt. 55, 5180-5186 (2016).
  14. Bahram Javidi, Artur Carnicer, Masahiro Yamaguchi, Takanori Nomura, Elisabet Pérez-Cabré, María S Millán, Naveen K Nishchal, Roberto Torroba, John Fredy Barrera, Wenqi He, Xiang Peng, Adrian Stern, Yair Rivenson, A Alfalou, C Brosseau, Changliang Guo, John T Sheridan, Guohai Situ, Makoto Naruse, Tsutomu  Matsumoto, Ignasi Juvells, Enrique Tajahuerce,  Jesús Lancis, Wen Chen, Xudong Chen and Pepijn W H Pinkse, Allard P Mosk, and Adam Markman, "Roadmap on optical security,” J. Opt. 18, 083001 (39 pages) (2016).
  15. Teruyoshi Nobukawa and Takanori Nomura, “Linear phase encoding for holographic data storage with a single phase-only spatial light modulator,” Appl. Opt. 55, 2565-2573 (2016).
  16. Takahiko Fukuoka, Yutaka Mori, and Takanori Nomura, "Speckle Reduction by Spatial-Domain Mask in Digital Holography,” J. Disp. Tech. 12, 315-322 (2016).
  17. Yutaka Mori, Takahiko Fukuoka, and Takanori Nomura, “Extended focused imaging in digital holography by spatial-domain mask method,” J. Opt. 17, 125706 (8 pages) (2015).
  18. Teruyoshi Nobukawa and Takanori Nomura, “Multilayer recording holographic data storage using a varifocal lens generated with a kinoform,” Opt. Lett. 40, 5419-5422 (2015).
  19. Yutaka Mori and Takanori Nomura, "Speckle reduction in hologram generation based on spherical waves synthesis using low-coherence digital holography,” J. Disp. Tech. 11, 867-872 (2015).
  20. Toshitaka Kobata and Takanori Nomura, “Digital holographic three-dimensional Mueller matrix imaging,” Appl. Opt. 54, 5591-5596 (2015).
  21. Teruyoshi Nobukawa, Yotaro Wani, and Takanori Nomura, “Multiplexed recording with uncorrelated computer-generated reference patterns in coaxial holographic data storage,” Opt. Lett. 40, 2161-2164 (2015).
  22. Yusuke Saita, Hironobu Shinto, and Takanori Nomura, "Holographic Shack–Hartmann wavefront sensor based on the correlation peak displacement detection method for wavefront sensing with large dynamic range," Optica 2, 411-415 (2015).
  23. Kaho Watanabe and Takanori Nomura, "Recording spatially incoherent Fourier hologram using dual channel rotational shearing interferometer," Appl. Opt. 54, A18-A22 (2015). 
  24. Yutaka Mori, Takahiko Fukuoka, and Takanori Nomura, "Speckle reduction in holographic projection by random pixel separation with time multiplexing," Appl. Opt. 53, 8182-8188 (2014).
  25. Yuji Tanaka, Yutaka Mori, and Takanori Nomura, "Single-shot three-dimensional shape measurement by low-coherent optical path difference digital holography," Appl. Opt. 53, G19-G24 (2014).
  26. Yusuke Saita and Takanori Nomura, "Design method of input phase mask to improve light use efficiency and reconstructed image quality for holographic memory," Appl. Opt. 53, 4136-4140 (2014).
  27. Teruyoshi Nobukawa and Takanori Nomura, "Design of high-resolution and multilevel reference pattern for improvement of both light utilization efficiency and signal-to-noise ratio in coaxial holographic data storage," Appl. Opt. 53, 3773-3781 (2014).
  28. Masatoshi Imbe and Takanori Nomura, “Selective calculation for improvement of reconstructed images in single-exposure generalized phase-shifting digital holography,” Opt. Eng. 53, 044102 (7 pages) (2014). 
  29. Kaho Watanabe, Masashi Ohshima, and Takanori Nomura, “Simultaneous measurement of refractive index and thickness distributions using low-coherence digital holography and vertical scanning,” J. Opt. 16, 045403 (8 pages) (2014).
  30. Yutaka Mori and Takanori Nomura, “Shortening method for optical reconstruction distance in digital holographic display with phase hologram,” Opt. Eng. 52, 123101-1-7 (2013).
  31. Teruyoshi Nobukawa and Takanori Nomura, “Coaxial Holographic Memory with Designed Reference Pattern on the Basis of Nyquist Aperture for High Density Recording,” Jpn. J. Appl. Phys. 52, 09LD09 (5pages) (2013). 
  32. Masatoshi Imbe and Takanori Nomura, "Study of reference waves in single-exposure generalized phase-shifting digital holography," Appl. Opt. 52, 4097-4102 (2013). 
  33. Yutaka Mori and Takanori Nomura, "Synthesis method from low-coherence digital holograms for improvement of image quality in holographic display," Appl. Opt. 52, 3838-3844 (2013)
  34. Masatoshi Imbe and Takanori Nomura, “Single-exposure phase-shifting digital holography using a random-complex-amplitude encoded reference wave,” Appl. Opt. 52, A161-A166 (2013). 
  35. Yusuke Saita, Takanori Nomura, Eiji Nitanai, and Takuhisa Numata, “Design of Reference Pattern and Input Phase Mask for Coaxial Holographic Memory,” Jpn. J. Appl. Phys. 50, 09ME03 (5 pages) (2011).
  36. Takanori Nomura and Masatoshi Imbe, "Single-exposure phase-shifting digital holography using a random-phase reference wave," Opt. Lett. 35, 2281-2283 (2010) .
  37. Hiroyuki Suzuki, Takanori Nomura, Eiji Nitanai, and Takuhisa Numata, “Dynamic Recording of a Digital Hologram with Single Exposure by a Wave-Splitting Phase-Shifting Method,” Opt. Rev. 17, No. 3, pp. 176-180 (2010).
  38. O. Matoba, T. Nomura, E. Perez-Cabre, M. S. Millan, and B. Javidi, “Optical Techniques for Information Security,” Proc. IEEE, 97, pp. 1128-48 (2009).
  39. Takanori Nomura, Mitsukiyo Okamura, Eiji Nitanai, and Takuhisa Numata, "Image quality improvement of digital holography by superposition of reconstructed images obtained by multiple wavelengths," Appl. Opt. 47, D38-D43 (2008).
  40. Takanori Nomura and Bahram Javidi, "Object recognition by use of polarimetric phase-shifting digital holography," Opt. Lett. 32, pp. 2146-2148 (2007).
  41. Takanori Nomura, Bahram Javidi, Shinji Murata, Eiji Nitanai, and Takuhisa Numata,"Polarization imaging of a three-dimensional object by use of on-axis phase-shifting digital holography," Opt. Lett. 32, No. 5, pp. 481-483 (2007).
  42. B. Javidi, C. M. Do, S. -H. Hong, and T. Nomura,"Multi-Spectral Holographic Three-Dimensional Image Fusion Using Discrete Wavelet Transform," J. Display Technol. 2, No. 4, pp. 411-417 (2006).
  43. Takanori Nomura, Shinji Murata, Eiji Nitanai, and Takuhisa Numata,"Phase shifting digital holography using phase difference of orthogonal polarizations," Appl. Opt. 45, No. 20, pp. 4873-4877 (2006).
  44. Takanori Nomura, Eiji Nitanai, Takuhisa Numata, and Bahram Javidi, "Design of input phase mask for the space bandwidth of the optical encryption system," Opt. Eng. 45, No. 1, 017006 (2006). 
  45. Takanori Nomura, Atsushi Okazaki, Masashi Kameda, Yoshiharu Morimoto, and Bahram Javidi, "Image reconstruction from compressed encrypted digital hologram," Opt. Eng. 44, No. 7, 075801 (2005) .
  46. Takanori Nomura, Kaoru Uota, and Yoshiharu Morimoto, "Hybrid optical encryption of a 3-D object using a digital holographic technique," Opt. Eng. 43, No. 10, pp. 2228-2232 (2004) .
  47. Takanori Nomura, Shunji Mikan, Yoshiharu Morimoto, and Bahram Javidi, "Secure optical data storage with random phase key codes by use of a configuration of a joint transform correlator," Appl. Opt. 42, No. 8, pp. 1508-1514 (2003).
  48. Satoru Yoneyama, Yoshiharu Morimoto, Takanori Nomura, Motoharu Fujigaki, and Ryo Matsui, "Real-time analysis of isochromatics and isoclinics using the phase-shifting method," Exper. Mechan. 43,No.1 pp.83-89 (2003).
  49. Takanori Nomura and Bahram Javidi,"Optical Encryption System with a Binary Key Code," Appl. Opt. 39, No. 26, pp. 4783-4787 (2000).
  50. Bahram Javidi and Takanori Nomura, "Polarization encoding for optical security system," Opt. Eng. 39, No. 9, pp. 2439-2443 (2000).
  51. Takanori Nomura and Bahram Javidi, "Optical encryption using a joint transform correlator architecture," Opt. Eng. 39, No. 9, pp. 2031-2035 (2000).
  52. Bahram Javidi and Takanori Nomura, "Securing information by use of digital holography," Opt. Lett. 25, No. 1, pp. 28-30 (2000).
  53. Takanori Nomura, "Phase-Encoded Joint Transform Correlator to Reduce the Influence of Extraneous Signals," Appl. Opt. 37, No. 17, pp. 3651-3655 (1998).
  54. Takanori Nomura and Masaya Tamaru, "Layered Blind Deconvolution Using Subband Filter Banks," Optical Review 4, No. 1B, pp. 164-166 (1997).
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