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Yamamoto Shinichi

Researcher at Kyushu University

Publications -  41
Citations -  1629

Yamamoto Shinichi is an academic researcher from Kyushu University. The author has contributed to research in topics: Liquid crystal & Phase (matter). The author has an hindex of 12, co-authored 41 publications receiving 1521 citations.

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39.1: Invited Paper: Optically Isotropic Nano‐Structured Liquid Crystal Composites for Display Applications

TL;DR: In this paper, the phase behavior and electro-optical Kerr effect of the optically isotropic liquid crystal composites, which require no surface treatment for device fabrication, were presented.
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A low voltage and submillisecond-response polymer-stabilized blue phase liquid crystal

TL;DR: In this article, a polymer-stabilized blue phase liquid crystal (BPLC) whose Kerr constant is about 2.2× larger than previous record was reported and when filled in a 3.2μm-thick vertical field switching cell, the on-state voltage was merely 8.4
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Optically isotropic-nanostructured liquid crystal composite with high Kerr constant

TL;DR: In this paper, the relationship between material parameters of host nematic liquid crystals and the Kerr constant of their nanostructured chiral liquid crystal composites was investigated, and it was shown that the Kerr constants of the host liquid crystals were closely related to the parameters of their host liquid crystal, such as value of the difference of refractive index (Δn), the dielectric anisotropy, and bend to splay elastic constant ratio (K33∕K11).
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A Fluid Liquid-Crystal Material with Highly Polar Order.

TL;DR: Results suggest that a unidirectional, ferroelectric-like parallel polar arrangement of the molecules is generated along the director in the MP phase, similar to that for a nematic phase.
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Optimized blue-phase liquid crystal for field-sequential-color displays

TL;DR: An optimized blue phase liquid crystal (BPLC) mixture JC-BP08 for field-sequential-color (FSC) display applications has been reported in this paper, where the transmittance can reach 74% at 15V, which enables single-TFT driving.