most citedConfigurable antiferromagnetic domains and lateral exchange bias in atomically thin CrPS4

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cond-mat.mes-hall2026

Experimental Realization of Synthetic Magnonic Lattice via Floquet Engineering

Amin Pishehvar, Jayakrishnan M. P. Nair, Zhaoyou Wang +5

Magnonic systems, which exploit spin-wave excitations in magnetic materials, offer a promising platform for coherent information processing due to their low dissipation, strong non…

cond-mat.mes-hall20264 cited

Programmable, Spontaneous Superlattice Memory in a Monolayer Topological Insulator

Jian Tang, Thomas Siyuan Ding, Shuhan Ding +24

Memory is a foundational concept across disciplines, from neurobiology and electronics to artificial intelligence and quantum gravity. In materials, memory effects typically arise…

cond-mat.mes-hall2026

Microscopic theory for electron-phonon coupling in twisted bilayer graphene

Ziyan Zhu, Thomas P. Devereaux

The origin of superconductivity in twisted bilayer graphene -- whether phonon-driven or electron-driven -- remains unresolved, in part due to the absence of a quantitative and effi…

cond-mat.mes-hall202514 cited

Configurable antiferromagnetic domains and lateral exchange bias in atomically thin CrPS4

Yu-Xuan Wang, Thomas K. M. Graham, Ricardo Rama-Eiroa +12

Interfacial exchange coupling between antiferromagnets (AFMs) and ferromagnets (FMs) crucially makes it possible to shift the FM hysteresis, known as exchange bias, and to switch A…

cond-mat.mes-hall20251 cited

Space-Charge-Limited van der Waals Spin Transistor

Thomas K. M. Graham, Yu-Xuan Wang, Niranjana Renjith Nair +5

Integrating semiconducting and magnetic materials could combine transistor-like operation with nonvolatility and enable architectures such as logic-in-memory. Here, we employ corre…