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Eiji Yamamoto

3 papers hereh-index 566 citations23 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • middle author1
  • last author2

Across the 3 of 3 papers where every author was matched, so the position is known.

fields
  • cond-mat.soft2
  • cond-mat.stat-mech1
same name
  • Eiji Yamamoto — 5 papers, h 20
  • Eiji Yamamoto — 2 papers
  • Eiji Yamamoto — 1 paper, h 1

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

collaborators
Showing cond-mat.softShow all

4 papers · 1 filter

cond-mat.soft2026

Dimensional Crossover of Thermal Transport in Nanoconfined Liquids Driven by the Interplay of Quasi-One-Dimensional Structure and Wall Dissipation

Kenta Hisamoto, Yusei Kobayashi, Takahiro Ikeda +2

Heat transport in nanoconfined liquids can deviate from ordinary Fourier behavior because confinement alters liquid structure and interfacial dissipation. Although such changes may…

cond-mat.soft2025

TDP-43 multidomains and RNA modulate interactions and viscoelasticity in biomolecular condensates

Yui Matsushita, Ikki Yasuda, Fuga Watanabe +1

RNA-binding proteins form biomolecular condensates with RNA through phase separation, playing crucial roles in various cellular processes. While intrinsically disordered regions (I…

cond-mat.soft2024

Diffusion of intrinsically disordered proteins within viscoelastic membraneless droplets

Fuga Watanabe, Takuma Akimoto, Robert B. Best +3

In living cells, intrinsically disordered proteins (IDPs), such as FUS and DDX4, undergo phase separation, forming biomolecular condensates. Using molecular dynamics simulations, w…

cond-mat.soft2024

Thermal transport of confined water molecules in quasi-one-dimensional nanotubes

Shun Imamura, Yusei Kobayashi, Eiji Yamamoto

Dimensions and molecular structure play pivotal roles in the principle of heat conduction. The dimensional characteristics of solution within nanoscale systems depend on the degree…

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