activity
20182020
most citedApplication of Cluster Variation and Path Probability Methods to the Tetragonal-Cubic Phase Transition in ZrO2

5 citations · 5 across the 2 of their papers we have counts for

collaborators

10 papers

cond-mat.mtrl-sci2020

First-principles calculation of electronic density of states and Seebeck coefficient in transition-metal-doped Si-Ge alloys

Ryo Yamada, Akira Masago, Tetsuya Fukushima +3

High value and large Seebeck coefficient have been reported in the nanostructured Fe-doped Si-Ge alloys. In this work, the large Seebeck coefficient in Fe-doped Si-Ge systems…

cond-mat.mtrl-sci2019

Origin of the Phase Separation into B2 and L21 Ordered Phases in the X-Al-Ti (X: Fe, Co, and Ni) Alloys from the First-principles Cluster Variation Method

Ryo Yamada, Tetsuo Mohri

The phase separation behaviors from the single B2 ordered phase into the two separate B2 and L2 ordered phases in the X-Al-Ti (X: Fe, Co, and Ni) alloys are analyzed using the…

cond-mat.mtrl-sci20195 cited

Application of Cluster Variation and Path Probability Methods to the Tetragonal-Cubic Phase Transition in ZrO2

Ryo Yamada, Tetsuo Mohri

Cluster variation method (CVM) and path probability method (PPM) have generally been employed to study replacive phase transitions in alloy systems. Recently, displacive phase tran…

cond-mat.mtrl-sci2019

Atomistic Relaxation Process in a Ni3Al Ordered Phase Using Path Probability Method with Vacancy Mechanisms

Ryo Yamada, Tetsuo Mohri

The path probability method (PPM), which is a natural extension of the cluster variation method (CVM) to a time domain, has been employed in a relaxation process of atomic configur…

cond-mat.mtrl-sci2019

Conversion of magnetic freedoms into atomic configurational freedoms within the Cluster Variation Method

Ryo Yamada, Tetsuo Mohri

The continuous displacement cluster variation method (CDCVM) has introduced local atomic displacements into the theoretical framework of the cluster variation method (CVM) by viewi…

cond-mat.mtrl-sci2018

Steepest-Entropy-Ascent Quantum Thermodynamics Models in Materials Science

Ryo Yamada, Michael R. von Spakovsky, William T. Reynolds

Steepest-entropy-ascent quantum thermodynamics, or SEAQT, is a unified approach of quantum mechanics and thermodynamics that avoids many of the inconsistencies that can arise betwe…