Session Details
[20a-P01-1~21]3.7 Optical measurement, instrumentation, and sensor
Fri. Sep 20, 2024 9:30 AM - 11:30 AM JST
Fri. Sep 20, 2024 12:30 AM - 2:30 AM UTC
Fri. Sep 20, 2024 12:30 AM - 2:30 AM UTC
P01 (Exhibition Hall A)
[20a-P01-1]Development of generalized-high accuracy universal polarimeter capable of
low-temperature cooling and its application to Bi2Sr2CaCu2O8+δ single crystals
〇Komei Okano1, Kun Zhang1, Keigo Tokita1, Kenta Nakagawa2, Takuya Nakanishi2, Masaki Fujita3, Toru Asahi1,2 (1.Faculty of Adv. Sci & Eng., Waseda Univ., 2.Comprehensive Research Organization, Waseda Univ., 3.Institute for Materials Research, Tohoku Univ.)
[20a-P01-2]Cross-sectional observations of curved structure using high-resolution optical coherence tomography with a visible broadband light source
〇(M2)Keisuke Kouma1, Nobuhiko Ozaki1 (1.Wakayama Univ.)
[20a-P01-3]Proposal of Low-coherence Dual-comb Spectroscopy using Polarization Interferometer in Spatial Optics and Applied to Distance Measurement
〇Kanyo Tanabe1, Yuki Sekiguchi1, Tatsutoshi Shioda1 (1.Saitama Univ.)
[20a-P01-4]Spectral analysis by a neural network using processed data whose dimensions have been reduced by principal component analysis as learning data No.2
〇Masaki Oba1 (1.JAEA)
[20a-P01-5]The laser energy dependence of the excitation number distribution on a mode-selectively excited phonon of SiC
〇KYOHEI YOSHIDA1, Heishun Zen2, Kan Hachiya3, Hideaki Ohgaki2 (1.Kumamoto Industrial Research Institute, 2.Kyoto Univ. IAE, 3.Kyoto Univ. GSES)
[20a-P01-6]Characterization of Polystyrene Aggregation by Measurements of Static and Dynamic Forward-Light-Scattering Imaging
〇Takashi Wakamatsu1, Makoto Ogata2, Hidenori Ue3 (1.Ibaraki KOSEN, 2.Fukushima Univ., 3.Fukushima KOSEN)
[20a-P01-7]Microfabrication of visible light cured resin using CW laser
〇Shota Nagahata1, Chikara Egami1 (1.Shizuoka Univ.)
[20a-P01-8]PH measurement using nanoparticles phase conjugator wave
〇Sayato Takeuchi1, Chikara Egami1 (1.Shizuoka Univ.)
[20a-P01-9]3D Measurement of Chloroplast using Degenerate Four-Wave Mixing Microscopy
〇Shuhei Sawazaki1, Chikara Egami1 (1.Shizuoka Univ.)
[20a-P01-10]Performance evaluation of polarization interferometric nonlinear
confocal microscope using CTF measurement
〇Mizuki Onouchi1, Chikara Egami1 (1.Shizuoka Univ.)
[20a-P01-11]Experimental Study for High Dynamic Range Film Thickness Measurement Using Amplitude Modulated Wave Interference
〇(M1)Fuma Wakabayashi1, Kotaro Kawai2 (1.Osaka Univ., 2.Kobe City College of Tech.)
[20a-P01-12]Fundamental Study on THz Microwave Generation using Optical Frequency Comb Synthesizer/Analyzer and its Application to Distance Measurement
〇Daisuke Noso1, Ryo Uchiyama1, Tatsutoshi Shioda1 (1.Saitama Univ.)
[20a-P01-13]Toward highest-ever spatial resolution in POF-based BOCDR
〇Seiga Ochi1, Keita Kikuchi2, Shuto Tsurugai2, Heeyoung Lee2, Yosuke Mizuno1 (1.YNU, 2.SIT)
[20a-P01-14]Electrical-domain analysis of fiber-transmitted light spectrum: impact of optical power variations
〇Ryo Takano1, Hamza Javid1, Marcelo A. Soto2, Yosuke Mizuno1 (1.YNU, 2.UTFSM)
[20a-P01-15]Proposal of electrial-domain temporal gating scheme for BOCDR
〇Ryuki Ohata1, Keita Kikuchi2, Kouta Ozaki1, Heeyoung Lee2, Yosuke Mizuno1 (1.YNU, 2.SIT)
[20a-P01-16]Distant strain distribution measurement by slope-assisted BOCDR
〇Yusei Shirai1, Ryo Inoue1, Yosuke Mizuno2, Heeyoung Lee1 (1.SIT, 2.YNU)
[20a-P01-17]Enhancement of loss point detection accuracy by double-slope-assisted BOCDR
〇Yukihiro Suzuki1, Yosuke Mizuno2, Heeyoung Lee1 (1.SIT, 2.YNU)
[20a-P01-18]Capillary fluid exchange system for infrared spectroscopy
〇Sho Kato1, Masaya Sugimoto1, Hiyori Uehara2, Sigeki Tokita3, Kenji Goya1 (1.Akita Prefectural Univ, 2.NIFS, 3.Kyoto Univ)
[20a-P01-19]Effect of Image Distortion on Convolutional Neural Network Recognition
〇Daichi Sone1, Kento Kumagai1, Wei Dong1 (1.NUT)
[20a-P01-20]Reducing the Impact of Filters on Stereo Matching of Generative Adversarial Networks
〇Tatsuki Uehara1, Kent Kumagai1, Dong Wei1 (1.NUT)
[20a-P01-21]Change in recognition rate of white interference fringes detection using convolutional neural network due to change in display scale of figures
〇(B)Ryohei Takeishi1, Taketo Miura1, Dong Wei1 (1.NUT)