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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 36  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
CPM 2018-03-01
16:50
Tokyo Tokyo Univ. of Technol. Fundamental study of fabrication of magneto-optical materials for a flexible magneto-optical imaging sensor
Kosuke Nishimoto (SNIT), Hiroyuki Takagi, Taichi Goto, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT), Ryosuke Hashimoto (SNIT) CPM2017-125
Non-destructive testing is an important technology to keep safety of our daily life. Magneto-optical imaging is a useful... [more] CPM2017-125
pp.37-38
MRIS, ITE-MMS 2017-12-08
09:20
Ehime Ehime Univ. Fabrication and properties of multilayered media for collinear magnetic hologram
Yuichi Nakamura, Naoki Hoshiba, Zen Shirakashi, Taichi Goto, Hiroyuki Takagi, Pang Beoy Lim, Hironaga Uchida, Mitsuteru Inoue (Toyohashi Tech.) MR2017-37
 [more] MR2017-37
pp.63-67
CPM 2017-10-28
11:05
Nagano Shinshu Univ. Nagano-Education Campus, E7 building 3F Fabrication of bismuth high substituted neodymium iron gallium garnet film using metal-organic decomposition method
Hideyuki Kurahashi, Kosuke Sasaki, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mituteru Inoue (TUT) CPM2017-77
 [more] CPM2017-77
pp.57-62
CPM 2017-10-28
11:25
Nagano Shinshu Univ. Nagano-Education Campus, E7 building 3F Fabrication of Magneto-optical materials and imaging device for Magneto-optical imaging
Kosuke Nishimoto, Ryosuke Hashimoto (SNIT), Hiroyuki Takagi, Taichi Goto, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT) CPM2017-78
 [more] CPM2017-78
pp.63-66
CPM 2017-10-04
15:40
Tokyo Kikai-Shinko-Kaikan Bldg. Effect of multi-layered magnetic media for recording volumetric magnetic hologram
Naoki Hoshiba, Zen Shirakashi, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Lim Pang Boey, Hironaga Uchida, Mitsuteru Inoue (Toyohashi Univ.) CPM2017-63
We have studied to realize rewritable magnetic hologram memory using magnetic garnet which is a stable material. Improve... [more] CPM2017-63
pp.19-24
CPM 2017-07-21
14:39
Hokkaido   Fabrication and properties of multiferroic PZT-Bi:RIG composite for optical modulation
Naoki Akiyama, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT) CPM2017-24
Magneto-optic spatial light modulator (MOSLM) controls light intensity depending on the direction of magnetization and h... [more] CPM2017-24
pp.15-19
SDM 2017-06-20
15:35
Tokyo Campus Innovation Center Tokyo Heavily-doped SOI Substrate and Transfer Printing for Fabrication of TMDC FETs
Takamasa Kawanago, Ryo Ikoma, Hiroyuki Takagi, Shunri Oda (Tokyo Inst. of Tech.) SDM2017-28
 [more] SDM2017-28
pp.35-38
CPM 2016-11-19
11:55
Ishikawa   Study on multi-valued three-dimensional magneto-optic spatial light modulator
Kazuki Yamazaki, Kazuki Nakamura, Hiroyuki Takagi (TUT), Taichi Goto (TUT/JST PRESTO), Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT) CPM2016-74
 [more] CPM2016-74
pp.65-68
CPM 2016-10-05
15:05
Tokyo Kikai-Shinko-Kaikan Bldg. Improvement of diffraction efficiency of volumetric magnetic hologram by magnetic assist recording conditions
Zen Shirakashi, Koudai Kawazu, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT) CPM2016-59
Magnetic garnet films such as bismuth, dysprosium, and aluminum substituted yttrium iron garnet (Bi:YIG) are used for re... [more] CPM2016-59
pp.23-28
CPM 2016-10-05
15:30
Tokyo Kikai-Shinko-Kaikan Bldg. Properties of Magnetic Volumetric Hologram with Magnetic Garnet/SiO2 Multilayer Structure.
Kodai Kawazu, Zen Shirakashi, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Pang Boey Lim, Hironaga Uchida, Mitsuteru Inoue (TUT) CPM2016-60
We have studied to realize magnetic hologram using a transparent polycrystalline magnetic garnet films with long-term st... [more] CPM2016-60
pp.29-34
CPM 2016-07-22
15:00
Ehime   Fabrication of bismuth substituted neodymium iron gallium garnet film using metal-organic decomposition method for magneto-optic spatial light modulator
Hideyuki Kurahashi, Kazuki Nakamura, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Lim Pang Boey, Hironaga Uchida, Mituteru Inoue (TUT) CPM2016-24
Magneto-optic spatial light modulators (MOSLMs) can modulate a polarization and phase of light with high switching speed... [more] CPM2016-24
pp.1-4
CPM, ED, SDM 2016-05-19
16:15
Shizuoka Shizuoka University, Hamamatsu campus (Joint Research Lab.) Fabrication of magnetophotonic crystal having cerium substituted yttrium iron garnet for using at near-infrared wavelength
Takuya Yoshimoto, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamaura, Hironaga Uchida, Mitsuteru Inoue (TUT) ED2016-20 CPM2016-8 SDM2016-25
Tantalum oxide based composite with yttria (Y-Ta-O) films were fabricated on synthetic fused silica substrates to invest... [more] ED2016-20 CPM2016-8 SDM2016-25
pp.35-38
CPM 2015-11-07
09:40
Niigata Machinaka Campus Nagaoka Improvement of diffraction efficiency and reduction of recording energy of magneto-optic three-dimensional display
Aki Nemoto, Kazuki Yamazaki, Sotaro Tsuda, Kei Kudo, Kazuki Nankamura, Taichi Goto, Hiroyuki Takagi, Lim Pang Boey, Mitsuteru Inoue (TUT) CPM2015-95
The holographic display can show naturalistic three-dimensional object images. We have developed magento-optic 3D displa... [more] CPM2015-95
pp.55-58
CPM 2015-11-07
10:00
Niigata Machinaka Campus Nagaoka Improvement of angular dependence of magnetophotonic crystal for magneto-optic three-dimensional display
Shoki Sakai, Kei Kudo, Kazuki Nakamura, Taichi Goto, Hiroyuki Takagi, Pang Boey Lim, Mitsuteru Inoue (TUT) CPM2015-96
We have developed a magneto-optic three-dimensional (3D) display using magnetophotonic crystals (MPCs). The MPC can incr... [more] CPM2015-96
pp.59-62
CPM 2015-11-07
11:15
Niigata Machinaka Campus Nagaoka Development of Spin Wave Multi-output Circuit Using Yttrium Iron Garnet Film
Hiroki Furuta, Taichi Goto, Naoki Kanazawa, Fumiya Kumaoka, Yuichi Nakamura, Lim Pang Boey, Hiroyuki Takagi, Mitsuteru Inoue (TUT) CPM2015-99
 [more] CPM2015-99
pp.71-74
CPM 2015-10-14
15:05
Tokyo Kikai-Shinko-Kaikan Bldg. Improvement of reconstructed image from collinear magnetic hologram by improvement of recording conditions.
Shota Suzuki, Ryosuke Isogai, Koudai Kawazu, Taichi Goto, Hiroyuki Takagi, Yuichi Nakamura, Pang Boey Lim, Mitsuteru Inoue (Toyohashi Tech.)
 [more]
CPM 2014-10-25
11:40
Nagano   Study on Reducing Energy for Thermomagnetic Recording of Magneto-optic Three Dimensional Display with Amorphous RE-TM Thin Film
Aki Nemoto, Kazuki Matsugami, Kazuki Nakamura, Taichi Goto, Hiroyuki Takagi, Pang Boey Lim, Mitsuteru Inoue (TUT) CPM2014-119
Three dimensional (3D) holographic display can show 3D images without any special glasses. We developed magneto-optic (M... [more] CPM2014-119
pp.65-68
CPM 2014-10-25
12:00
Nagano   Study on Multi-valued Magneto-optic Three-dimensional Display with Magnetic Garnet Film
Sotaro Tsuda, Kazuki Nakamura, Taichi Goto, Hiroyuki Takagi, Pang Boey Lim, Mitsuteru Inoue (TUT) CPM2014-120
The holographic display can represent real 3D images without any special glasses. A key characteristic of holographic di... [more] CPM2014-120
pp.69-73
CPM 2014-10-08
14:20
Tokyo   Fabrication of cerium substituted yttrium iron garnets on dielectric mirrors using vacuum anneal
Takuya Yoshimoto, Taichi Goto, Naoki Kanazawa, Ryosuke Isogai, Hiroyuki Takagi, Yuichi Nakamura (Toyohashi Univ. of Tech.), Caroline A. Ross (Massachusetts Inst. of Tech.), Mitsuteru Inoue (Toyohashi Univ. of Tech.) CPM2014-94
Polycrystalline cerium-substituted yttrium iron garnet (Ce:YIG) was grown on dielectric mirror substrates by rf sputteri... [more] CPM2014-94
pp.13-16
CPM 2014-10-08
15:30
Tokyo   Improvement of Diffraction Efficiency of Magnetic Volumetric Hologram with Magnetic Garnet/Alumina Multilayer Structure
Kan Kobayashi, Ryosuke Isogai, Taichi Goto, Hiroyuki Takagi, Pang Boey Lim, Yuichi Nakamura, Mitsuteru Inoue (Toyohashi Univ. of Tech) CPM2014-96
The magnetic hologram using magnetic garnet films are expected to high density rewritable media, while its diffraction e... [more] CPM2014-96
pp.21-24
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