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Norihiro Oyama

Showing results (1-10 of 14) with videos related to

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Soft Matter|October 26, 2022
Gas-liquid phase separation at zero temperature: mechanical interpretation and implications for gelationMasanari Shimada, Norihiro Oyama
Physical Review. E|August 20, 2021
Unified view of avalanche criticality in sheared glassesNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Physical Review Letters|May 31, 2019
Avalanche Interpretation of the Power-Law Energy Spectrum in Three-Dimensional Dense Granular FlowNorihiro Oyama, Hideyuki Mizuno, Kuniyasu Saitoh
Physical Review Letters|September 17, 2021
Instantaneous Normal Modes Reveal Structural Signatures for the Herschel-Bulkley Rheology in Sheared GlassesNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Soft Matter|July 26, 2023
Shear-induced criticality in glasses shares qualitative similarities with the Gardner phaseNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Physical Review. E|May 14, 2016
Purely hydrodynamic origin for swarming of swimming particlesNorihiro Oyama, John Jairo Molina, Ryoichi Yamamoto
The European Physical Journal. E, Soft Matter|November 8, 2017
Do hydrodynamically assisted binary collisions lead to orientational ordering of microswimmers?Norihiro Oyama, John Jairo Molina, Ryoichi Yamamoto
Soft Matter|April 10, 2019
Correction: Transition rates for slip-avalanches in soft athermal disks under quasi-static simple shear deformationsKuniyasu Saitoh, Norihiro Oyama, Fumiko Ogushi, et al.
Physical Review Letters|April 19, 2024
Scale Separation of Shear-Induced Criticality in GlassesNorihiro Oyama, Takeshi Kawasaki, Kang Kim, et al.
RSC Advances|March 26, 2025
Varying the rheological behavior of a micellar solution <i>via</i> modified microscopic structures in the presence of graphene oxideTakumi Kusano, Norihiro Oyama, Hiroaki Yoshida, et al.
Pageof 2

Showing results (1-10 of 14) with videos related to

Sort By:
Pageof 2
Soft Matter|October 26, 2022
Gas-liquid phase separation at zero temperature: mechanical interpretation and implications for gelationMasanari Shimada, Norihiro Oyama
Physical Review. E|August 20, 2021
Unified view of avalanche criticality in sheared glassesNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Physical Review Letters|May 31, 2019
Avalanche Interpretation of the Power-Law Energy Spectrum in Three-Dimensional Dense Granular FlowNorihiro Oyama, Hideyuki Mizuno, Kuniyasu Saitoh
Physical Review Letters|September 17, 2021
Instantaneous Normal Modes Reveal Structural Signatures for the Herschel-Bulkley Rheology in Sheared GlassesNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Soft Matter|July 26, 2023
Shear-induced criticality in glasses shares qualitative similarities with the Gardner phaseNorihiro Oyama, Hideyuki Mizuno, Atsushi Ikeda
Physical Review. E|May 14, 2016
Purely hydrodynamic origin for swarming of swimming particlesNorihiro Oyama, John Jairo Molina, Ryoichi Yamamoto
The European Physical Journal. E, Soft Matter|November 8, 2017
Do hydrodynamically assisted binary collisions lead to orientational ordering of microswimmers?Norihiro Oyama, John Jairo Molina, Ryoichi Yamamoto
Soft Matter|April 10, 2019
Correction: Transition rates for slip-avalanches in soft athermal disks under quasi-static simple shear deformationsKuniyasu Saitoh, Norihiro Oyama, Fumiko Ogushi, et al.
Physical Review Letters|April 19, 2024
Scale Separation of Shear-Induced Criticality in GlassesNorihiro Oyama, Takeshi Kawasaki, Kang Kim, et al.
RSC Advances|March 26, 2025
Varying the rheological behavior of a micellar solution <i>via</i> modified microscopic structures in the presence of graphene oxideTakumi Kusano, Norihiro Oyama, Hiroaki Yoshida, et al.
Pageof 2