collaborators

12 papers

cond-mat.str-el2026

Stripe antiferromagnetism in van der Waals metal HoTe3 decoupled from charge density wave order

Weiyi Yun, Ryota Nakano, Ryo Misawa +10

The () family of layered van der Waals (vdW) compounds hosts coexisting magnetic and charge density wave (CDW) orders, yet the interplay bet…

cond-mat.mes-hall2026

Emergent electric field induced by dissipative sliding dynamics of domain walls in a Weyl magnet

Rinsuke Yamada, Daichi Kurebayashi, Yukako Fujishiro +10

The dynamic motion of topological defects in magnets induces an emergent electric field, as exemplified by the continuous flow of skyrmion vortices. However, the electrodynamics un…

cond-mat.supr-con2025

Bulk superconductivity in the kagome metal YRu3B2

Tobi Gaggl, Ryo Misawa, Markus Kriener +3

Materials with a kagome sublattice have been heavily studied recently for their exotic electronic band structure, structural frustration, high-temperature charge order transitions,…

cond-mat.str-el2025

Metallic -wave magnet with commensurate spin helix

Rinsuke Yamada, Max T. Birch, Priya R. Baral +20

Antiferromagnetic states with spin-split electronic structure give rise to novel spintronic, magnonic, and electronic phenomena despite (near-) zero net magnetization. The simplest…

cond-mat.str-el2025

Successive orthorhombic distortions in kagome metals by molecular orbital formation

Ryo Misawa, Shunsuke Kitou, Rinsuke Yamada +12

The kagome lattice, with its inherent frustration, hosts a plethora of exotic phenomena, including the emergence of charge density wave order. The high rotational sym…

cond-mat.mes-hall2025

Material realization of spinless, covalent-type Dirac semimetals in three dimensions

Yuki Tanaka, Rinsuke Yamada, Manabu Sato +2

Realization of a three-dimensional (3D) analogue of graphene has been a central challenge in topological materials science. Graphene is stabilized by covalent bonding unlike conven…