Twisting graphene unlocks correlated states and topological phenomena
The discovery of superconductivity and correlated insulating states in magic-angle twisted bilayer graphene transformed a deceptively simple material into one ...
The discovery of superconductivity and correlated insulating states in magic-angle twisted bilayer graphene transformed a deceptively simple material into one ...
Photon-driven electron excitation is a foundational mechanism underpinning the interaction between light and matter in quantum materials, including van der ...
University of Arizona researchers report a proof-of-concept advance for graphene nanoribbons (GNRs) as radiation-tolerant sensing elements. The team integrated nine-atom-wide ...
Researchers at the City College of New York (CCNY) have unveiled groundbreaking insights into atomically thin quantum materials where light, ...
In a groundbreaking advance for quantum materials, researchers have unveiled a new mechanism for realizing Weyl topological superconductivity in three-dimensional ...
Scientists at Auburn University are pioneering a groundbreaking class of materials that controls the behavior of electrons freed from atomic ...
In a groundbreaking advance that could redefine the landscape of quantum materials and ultracold atom physics, a team of physicists ...
In the relentless pursuit of novel materials with extraordinary properties, the field of quantum materials continues to captivate scientists worldwide. ...
In a groundbreaking study, a team of researchers from the University of Ottawa has developed innovative methodologies for enhancing the ...
In the realm of quantum physics, the exploration of allowed and forbidden energy states has unveiled astonishing insights into the ...
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© 2025 Scienmag - Science Magazine