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J-GLOBAL ID:201401087007774784   Update date: Aug. 22, 2024

Yamamoto Jun

ヤマモト ジュン | Yamamoto Jun
Affiliation and department:
Research field  (1): Bio-, chemical, and soft-matter physics
Research theme for competitive and other funds  (29):
  • 2020 - 2025 階層的時空構造と動的不均一性から紡ぐナノ力学機構の理解と制御
  • 2020 - 2023 Universality in the dynamic heterogeneities and pseudo isotropic phases
  • 2014 - 2020 CREST, JST
  • 2017 - 2019 Topological Glass State investigated by novel observation methods for dynamic heteloginety
  • 2015 - 2018 Hierarchical Dynamic Heterogeneity and Topological Phase Transitions
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Papers (203):
MISC (64):
  • Yoshiaki Uchida, Yoichi Takanishi, Jun Yamamoto. Controlled Fabrication and Photonic Structure of Cholesteric Liquid Crystalline Shells (vol 25, pg 3234, 2013). ADVANCED MATERIALS. 2014. 26. 29. 4919-4919
  • Yoshioka Jun, Takanishi Yoichi, Yamamoto Jun, Nishiyama Isa, Stannarius Ralf. 28aAA-2 Stability of Perforated Lamellar-Nematic phase and its surface tension. Meeting abstracts of the Physical Society of Japan. 2014. 69. 1. 400-400
  • Yamamoto Jun, Nishiyama Isa. 29aXC-1 Critical Fluctuation in the Vicinity of Iso-Smectic Blue Phase. Meeting abstracts of the Physical Society of Japan. 2013. 68. 1. 444-444
  • Kimoto Yasuhiro, Nishizawa Ayumi, Takanishi Yoichi, Ishii Yoko, Yoshizawa Atsushi, Yamamoto Jun. 18pAB-1 Frustrated Smectic C Phases in Amphiphilic Liquid Crystal. Meeting abstracts of the Physical Society of Japan. 2012. 67. 2. 324-324
  • Yamamoto Jun, Kawamoto Michihisa, Takanishi Yoichi, Nishiyama Isa. 3a09 Helix untangled C-director anchoring in homeotropic SC* phases induced by the intercalated polymer nano-sheets and new ferroelectric in-plane fast switching principle. 2012. 2012. "3a09-1"-"3a09-2"
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Patents (12):
  • 光学素子及び光学素子のリフレッシュ駆動方法
  • 光学素子及び光学素子のリフレッシュ駆動方法
  • 高分子分散型液晶素子及びその製造方法
  • 複合体及び光学素子
  • 複合体及び光学素子
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Lectures and oral presentations  (21):
  • Slippery Interface -Mechanism and Physical Properties-
    (IDW 2020 2020)
  • Design and characterization for weakly anchored and highly lubricated slippery interfaces
    (SPIE Photonics+Optics 2019)
  • Fast response and low driving voltage DH-FLC mode of SmC* on the slippery interfaces
    (FLC2019 2019)
  • Slippery Interfaces
    (Piers 2019 2019)
  • Slippery Interfaces
    (SPIE Opto 2019)
more...
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