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quant-ph2025

Super-Moiré Spin Textures in Twisted Antiferromagnets

King Cho Wong, Ruoming Peng, Eric Anderson +15

Stacking two-dimensional (2D) layered materials offers a powerful platform to engineer electronic and magnetic states. In general, the resulting states, such as Moiré magnetism, h…

cond-mat.mes-hall2025

Visualizing Electronic Structure of Twisted Bilayer MoTe2 in Devices

Cheng Chen, William Holtzmann, Xiao-Wei Zhang +12

The pursuit of emergent quantum phenomena lies at the forefront of modern condensed matter physics. A recent breakthrough in this arena is the discovery of the fractional quantum a…

cond-mat.mes-hall2025

Optical control over topological Chern number in moiré materials

Olivier Huber, Kilian Kuhlbrodt, Eric Anderson +7

Controlling quantum matter with light offers a promising route to dynamically tune its many-body properties, ranging from band topology to superconductivity. However, achieving suc…

cond-mat.mes-hall2025

Optical Control of Integer and Fractional Chern Insulators

William Holtzmann, Weijie Li, Eric Anderson +9

Optical control of topology, particularly in the presence of electron correlations, is a fascinating topic with broad scientific and technological impact. Twisted MoTe bilayer…

cond-mat.mes-hall2025

Universal Magnetic Phases in Twisted Bilayer MoTe

Weijie Li, Evgeny Redekop, Christiano Wang Beach +15

Twisted bilayer MoTe (tMoTe) has emerged as a robust platform for exploring correlated topological phases, notably supporting fractional Chern insulator (FCI) states at zer…

cond-mat.mes-hall2025

Magnetoelectric Control of Helical Light Emission in a Moiré Chern Magnet

Eric Anderson, Heonjoon Park, Kaijie Yang +7

Magnetoelectric effects and their coupling to light helicity are important for both fundamental science and applications in sensing, communication, and data storage. Traditional ap…