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Rotation symmetry breaking in the normal state of a kagome superconductor KV3Sb5
Recently discovered superconductors A V3Sb5 (A= K, Rb, Cs), provide a fresh opportunity to
study correlation-driven electronic phenomena on a kagome lattice. The observation of an …
study correlation-driven electronic phenomena on a kagome lattice. The observation of an …
No observation of chiral flux current in the topological kagome metal
Compounds with kagome lattice usually host many exotic quantum states, including the
quantum spin liquid, non-trivial topological Dirac bands and a strongly renormalized flat …
quantum spin liquid, non-trivial topological Dirac bands and a strongly renormalized flat …
Evidence for a spinon Kondo effect in cobalt atoms on single-layer 1T-TaSe2
Quantum spin liquids are highly entangled, disordered magnetic states that are expected to
arise in frustrated Mott insulators and to exhibit exotic fractional excitations such as spinons …
arise in frustrated Mott insulators and to exhibit exotic fractional excitations such as spinons …
Ultrathin Van der Waals Antiferromagnet CrTe3 for Fabrication of In‐Plane CrTe3/CrTe2 Monolayer Magnetic Heterostructures
Ultrathin van der Waals (vdW) magnets are heavily pursued for potential applications in
develo** high‐density miniaturized electronic/spintronic devices as well as for topological …
develo** high‐density miniaturized electronic/spintronic devices as well as for topological …
Light-induced shift current vortex crystals in moiré heterobilayers
Transition metal dichalcogenide (TMD) moiré superlattices provide an emerging platform to
explore various light-induced phenomena. Recently, the discoveries of novel moiré excitons …
explore various light-induced phenomena. Recently, the discoveries of novel moiré excitons …
Atomically sharp domain walls in an antiferromagnet
The interest in understanding scaling limits of magnetic textures such as domain walls spans
the entire field of magnetism from its physical fundamentals to applications in information …
the entire field of magnetism from its physical fundamentals to applications in information …
Spin-polarized imaging of the antiferromagnetic structure and field-tunable bound states in kagome magnet FeSn
Kagome metals are an exciting playground for the explorations of novel phenomena at the
intersection of topology, electron correlations and magnetism. The family of FeSn-based …
intersection of topology, electron correlations and magnetism. The family of FeSn-based …
Spin‐Resolved Imaging of Antiferromagnetic Order in Fe4Se5 Ultrathin Films on SrTiO3
Unraveling the magnetic order in iron chalcogenides and pnictides at atomic scale is pivotal
for understanding their unconventional superconducting pairing mechanism, but is …
for understanding their unconventional superconducting pairing mechanism, but is …
Hidden non-collinear spin-order induced topological surface states
Rare-earth monopnictides are a family of materials simultaneously displaying complex
magnetism, strong electronic correlation, and topological band structure. The recently …
magnetism, strong electronic correlation, and topological band structure. The recently …
Nanoscale visualization of the thermally driven evolution of antiferromagnetic domains in FeTe thin films
Antiferromagnetic order, being a ground state of a number of exotic quantum materials, is of
immense interest both from the fundamental physics perspective and for driving potential …
immense interest both from the fundamental physics perspective and for driving potential …