This is a AI-aided roundup of the recent quantum materials related publications and articles. The most interesting is perhaps this wafer-Scale NbSe2 article:
Air-stable monolayer superconductors for circuits,
plus bulk moire superconductivity, Majorana platforms, quantum sensors, and Weyl taxonomy.
Feature: encapsulation epitaxy of air-stable monolayer NbSe2 (Zheng, Kong, Oliver et al., Nature 2026). Journal | arXiv | MIT News
Large-area monolayer NbSe2 grown under graphene or hBN stays air-stable, reaches wafer-relevant scales, and shows useful kinetic inductance. A practical route toward 2D superconducting circuit elements.
Bulk superconductivity in a natural moire crystal
(Sr6TaS8)1+x(TaS2)8 shows bulk SC at Tc = 2.5 K, without a twisted stack.
arXiv 2609.06622
Altermagnet + s-wave SC to topological p-wave
V2Se2O interface proposal for Chern superconductivity and chiral Majorana edges.
arXiv 2609.13408
hBN spin-pair defects as pressure-tough sensors
Optically active spins stay readable to 20 GPa; compression can also create new emitters.
arXiv 2609.02100
Triplet Weyl complexes expand the Weyl taxonomy
Symmetry-protected three-node structures; carbon allotrope DZQH-C36 as a candidate host.
arXiv 2609.05120
Layer-count design for topological magnets
New Ce3Au4Ge2Bi4 bridges square-net phases with ferrimagnetism and a tilted type-II Dirac cone.
Tohoku / JACS
Do Weyl metals dodge Anderson localization?
Theory: topology may keep 3D Weyl metals delocalized when Dirac and nodal-line metals do not.
arXiv 2609.16124