activity
20242026
collaborators

8 papers

cond-mat.mtrl-sci2026

Neural electron backscatter diffraction

I-Tzu Huang, Marat I. Latypov

At the mesoscale, the state of a material is described by continuous fields. In polycrystals, crystallographic orientation and defect content vary continuously within grains, and g…

cond-mat.mtrl-sci2026

Lattice genome: representation and analysis of heterogeneous crystalline microstructures

Jiayang Wang, Mathieu Calvat, J. C. Stinville +1

Inspired by the concept of a generalized materials genome, we introduce the notions of lattice gene and lattice genome for crystalline materials. A lattice gene is a compact repres…

cond-mat.mtrl-sci2026

Thermodynamic assessment of the Ba-La-S and Ga-La-S systems

Jiayang Wang, Guangyu Hu, Pierre Lucas +1

This paper presents the first thermodynamic assessment of binary and pseudo-binary phase diagrams in the Ba--La--S and Ga--La--S systems by means of the CALPHAD method. Experimenta…

cond-mat.mtrl-sci2026

Eutectic and peritectic equilibria in coherent binary alloys

Samiah Hassan, Jiayang Wang, Teddy Meissner +2

This work extends the Cahn--Larché thermodynamic framework to binary alloys in which two coherent solid phases coexist with an incoherent liquid and investigates how coherency str…

physics.geo-ph2026

Hearing the forest for the trees: machine learning and topological acoustics for remote sensing with seismic noise

Jiayang Wang, I-Tzu Huang, Bingxu Luo +7

Monitoring remote forests is a global challenge central to climate mitigation and biodiversity conservation, yet satellite observations are frequently limited by weather, dense can…

cond-mat.mtrl-sci2025

SR-CLD: Spatially Resolved Chord Length Distributions for Statistical Description and Visualization of Non-uniform Microstructures

Sheila E. Whitman, Marat I. Latypov

This study introduces the calculation of spatially-resolved chord length distribution (SR-CLD) as an efficient approach for quantifying and visualizing non-uniform microstructures…