most citedAcoustic excitations and elastic heterogeneities in disordered solids

85 citations · 170 across the 4 of their papers we have counts for

collaborators

9 papers

cond-mat.soft2023

Heterogeneity and Low-Frequency Vibrations in Bidisperse Sphere Packings

Yusuke Hara, Hideyuki Mizuno, Atsushi Ikeda

In the jamming transition of monodisperse packings, spatial heterogeneity is irrelevant as the transition is described by mean-field theories. Here, we show that this situation dra…

cond-mat.soft2023

Scale Separation of Shear-induced Criticality in Glasses

Norihiro Oyama, Takeshi Kawasaki, Kang Kim +1

In a sheared steady state, glasses reach a nonequilibrium criticality called yielding. In this letter, we report that the qualitative nature of this nonequilibrium critical phenome…

cond-mat.soft2023

Microrheology near jamming

Yusuke Hara, Hideyuki Mizuno, Atsushi Ikeda

The jamming transition is a nonequilibrium critical phenomenon, which governs characteristic mechanical properties of jammed soft materials, such as pastes, emulsions, and granular…

cond-mat.soft2023

Arrhenius temperature dependence of the crystallization time of deeply supercooled liquids

Yuki Takaha, Hideyuki Mizuno, Atsushi Ikeda

Usually, supercooled liquids and glasses are thermodynamically unstable against crystallization. Classical nucleation theory (CNT) has been used to describe the crystallization dyn…

cond-mat.soft202312 cited

Non-phononic density of states of two-dimensional glasses revealed by random pinning

Kumpei Shiraishi, Hideyuki Mizuno, Atsushi Ikeda

The vibrational density of states of glasses is considerably different from that of crystals. In particular, there exist spatially localized vibrational modes in glasses. The densi…

cond-mat.soft202212 cited

Low-Frequency Vibrational States in Ideal Glasses with Random Pinning

Kumpei Shiraishi, Yusuke Hara, Hideyuki Mizuno

Glasses exhibit spatially localized vibrations in the low-frequency regime. These localized modes emerge below the boson peak frequency , and their vibrational densiti…