collaborators

5 papers

physics.flu-dyn2026

Topology Controls the Phase Separation Dynamics of Many Component Fluid Mixtures

Michael Rennick, Xitong Zhang, Halim Kusumaatmaja

Fluid mixtures, ranging from the cellular cytoplasm to synthetic DNA nanostar systems, can spontaneously compartmentalize into many () coexisting liquid phases through liquid-li…

physics.flu-dyn2026

N-Component Free Energy Lattice Boltzmann Method with Reduction Consistency and Global Momentum Conservation

Michael Rennick, Xitong Zhang, Tim Niklas Bingert +2

We present a free energy lattice Boltzmann model capable of simulating fluid systems with an arbitrary number of immiscible components in principle. Our method is strictly reductio…

cond-mat.soft2026

Understanding the Dynamics of Evaporation-Driven Colloidal Self-Assembly

Junyu Yang, Abhinav Naga, Xitong Zhang +1

Complex colloidal cluster morphologies are desirable for the fabrication of advanced materials, such as photonic crystals and meta-materials, and can be formed through evaporation-…

physics.flu-dyn2025

Modelling droplet-particle interactions on solid surfaces by coupling the lattice Boltzmann and discrete element methods

Abhinav Naga, Xitong Zhang, Junyu Yang +1

We develop a three-dimensional numerical scheme for investigating interfacial flows coupled with frictional solid particles. Our approach combines the lattice Boltzmann method (LBM…

physics.flu-dyn2025

Multiple Equilibria Enables Tunable Wetting of Droplets on Patterned Liquid Surfaces

Xitong Zhang, Hongyu Zhao, Jack R. Panter +4

Patterning solid surfaces with varying wettability is important to manage droplets in microfluidics, heat transfer and printing. Solid surface roughness poses fundamental limitatio…