Condensed matter physics and materials science form a dynamic partnership, exploring how the collective behavior of atoms gives rise to the unique properties of solids and liquids. This field bridges the gap between fundamental quantum mechanics and the practical engineering of everything from flexible electronics to superconductors, turning abstract theories into tangible innovations that shape our daily lives.

At Gist.Science, we process every new preprint in this category directly from arXiv to make these complex discoveries accessible to everyone. Our team generates both plain-language overviews and detailed technical summaries for each paper, ensuring that researchers, students, and curious minds alike can grasp the latest breakthroughs without getting lost in dense jargon.

Below are the latest papers in condensed matter and materials science, organized by their most recent publication dates.

🔬 materials science

Effect of Grain Size and Local Chemical Order on Creep Resistance in MoNbTaW Refractory High-Entropy Alloy: A Molecular Dynamics Study

This molecular dynamics study demonstrates that the creep resistance of MoNbTaW refractory high-entropy alloys is significantly enhanced by increasing grain size and introducing local chemical order, as both factors strengthen grain boundaries and suppress grain-boundary-dominated deformation mechanisms.

Saifuddin Zafar, Mashaekh Tausif Ehsan, Sourav Das Suvro, Mahmudul Islam, Mohammad Nasim Hasan2026-03-30
🔬 materials science

Phenothiazine-Based Self-Assembled Monolayer with Thiophene Head Groups Minimizes Buried Interface Losses in Tin Perovskite Solar Cells

This study introduces a novel phenothiazine-based self-assembled monolayer with thiophene head groups (Th-2EPT) that optimizes interfacial coordination and lattice matching in tin perovskite solar cells, enabling a record power conversion efficiency of 8.2% that surpasses traditional PEDOT-based devices.

Valerio Stacchini, Madineh Rastgoo, Mantas Marčinskas, Chiara Frasca, Kazuki Morita, Lennart Frohloff, Antonella Treglia (…)2026-03-30
🔬 materials science

Unlocking Doping Effects on Altermagnetism in MnTe: Emergence of Quasi-altermagnetism

This study demonstrates that substitutional doping in the prototype altermagnet MnTe breaks specific symmetries to induce a generic spin-splitting in antiferromagnetic bands, defining a new class of "quasi-altermagnetic" materials capable of exhibiting tunable anomalous Hall conductivity.

Nayana Devaraj, Anumita Bose, Arindom Das, Md Afsar Reja, Arijit Mandal, Awadhesh Narayan, B. R. K. Nanda2026-03-30
🔬 materials science

A finite-element Delta-Sternheimer approach for computing accurate all-electron RPA correlation energies of polyatomic molecules

This paper introduces a finite-element Delta-Sternheimer approach that integrates atomic orbital basis sets with finite-element grids to compute accurate all-electron RPA correlation energies for polyatomic molecules directly at the complete basis set limit, thereby eliminating the need for conventional extrapolation schemes and providing fully controlled numerical precision for systems like water dimers and the G2 set.

Hao Peng, Haochen Liu, Chuhao Li, Hehu Xie, Xinguo Ren2026-03-30
🔬 materials science

Electronic structure theory of H3_{3}S: Plane-wave-like valence states, density-of-states peak and its guaranteed proximity to the Fermi level

This paper elucidates the mechanism behind the high transition temperature in sulfur superhydride H3_{3}S by demonstrating that its valence states are plane-wave-like, leading to a density-of-states peak near the Fermi level through the hybridization of specific plane waves driven by the adjacency of Jones' large zone to the Fermi surface.

Ryosuke Akashi2026-03-30
🔬 condensed matter

Magnetism and magnetoelastic effect in 2D van der Waals multiferroic CuCrP2S6

This study resolves the ground state magnetization direction and field responses of the 2D van der Waals multiferroic CuCrP2S6 through magnetic and neutron diffraction analyses, while revealing a magnetoelastic coupling effect that enables out-of-plane strain to effectively tune its magnetic properties.

Jiasen Guo, Ryan P. Siebenaller, Michael A. Susner, Jiaqiang Yan, Zachary Morgan, Feng Ye2026-03-30
🔬 materials science

Electrical and thermal magnetotransport in altermagnetic CrSb

This study investigates the electrical and thermal magnetotransport properties of single-crystalline altermagnetic CrSb under high magnetic fields, revealing a compensated semimetallic nature with large nonsaturating magnetoresistance, nonlinear Hall responses, and dominant electronic heat transport supported by multicarrier modeling.

Sajal Naduvile Thadathil, Christoph Müller, Reza Firouzmandi, Lorenz Farin, Srikanta Goswami, Antonin Badura, Pascal Man (…)2026-03-30