activity
20242026
collaborators

6 papers

cond-mat.mes-hall2026

Kinetic simulation of magnetic-field-tuned hydrodynamic electron transport in graphene corbino disk

Chuang Zhang, Meng Lian, Hong Liang +3

Hydrodynamic electron transport, in which electrical transport in solids resembles fluid hydrodynamics when momentum-conserving electron-electron scattering dominates, has attracte…

physics.comp-ph2026

Semi-implicit Lax-Wendroff kinetic scheme for electron-phonon coupling

Jiaming Li, Hong Liang, Meng Lian +2

A semi-implicit Lax-Wendroff scheme is developed for electron-phonon coupling process in metals based on the two-temperature kinetic equations. The core of this method is to integr…

physics.comp-ph2026

Semi-implicit Lax-Wendroff kinetic scheme for hydrodynamic phonon transport

Shijie Li, Hong Liang, Songze Chen +1

A semi-implicit Lax-Wendroff kinetic scheme is developed for hydrodynamic phonon transport in solid materials based on the Boltzmann transport equation under the double relaxation…

cond-mat.mes-hall2025

Non-equilibrium transport and phonon branch-resolved size effects based on a multi-temperature kinetic model

Chuang Zhang, Houssem Rezgui, Meng Lian +1

Non-equilibrium transport and phonon branch-resolved size effects in single-layer graphene materials are studied under a multi-temperature kinetic model, which is developed for cap…

cond-mat.mes-hall2025

Effects of heating strategies and ballistic transport on the transient thermal conduction in 3D FinFETs

Chuang Zhang, Ziyang Xin, Qin Lou +1

Efficiently capturing the three-dimensional spatiotemporal distributions of temperature is of great significance for alleviating hotspot issues in 3D FinFETs. However, most previou…

physics.comp-ph2024

Semi-implicit Lax-Wendroff kinetic scheme for multi-scale phonon transport

Shuang Peng, Songze Chen, Hong Liang +1

Fast and accurate predictions of the spatiotemporal distributions of temperature are crucial to the multi-scale thermal management and safe operation of microelectronic devices. To…