First atomic-scale evidence of d-wave spin-lattice locking and a new spin-stripe locking in RbV2Se2O establishes quadruple spin-texture locking in a 2D altermagnet.
Atomic- scale spin sensing of a 2Dd-wave altermagnet via helical tunneling
7 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
years
2026 7verdicts
UNVERDICTED 7roles
background 1polarities
background 1representative citing papers
Atomic-scale STM identifies both C-type (d-wave altermagnetic) and G-type (antiferromagnetic) magnetic configurations in KV2Se2O, both generating similar spin-split electronic structures.
Altermagnetic tunnel junctions based on KV2Se2O exhibit low-bias negative differential resistance and sign-inverting ultra-high TMR due to the material's quasi-2D Fermi surface.
Elliptically polarized light irradiation converts d-wave altermagnets into Chern insulators, yielding quantized thermal Hall conductivity and gap-edge peaks in the thermoelectric Hall response.
Pressure suppresses the density-wave feature in the d-wave altermagnet candidate CsV2Se2O and induces a reproducible, field-suppressible resistive downturn below 3 K suggestive of superconductivity.
A J1-J2-J3 Heisenberg model plus DFT yields a global phase diagram for NiAs-type compounds that includes new g-wave altermagnets, f-wave OPMs, and mixed-parity states dominated by f-wave in CrSe and CrTe1-xSex.
V2O-based altermagnets enable robust spin-polarized specular Andreev reflection in superconductor junctions, detectable via nonlocal conductance in a multiterminal geometry.
citing papers explorer
-
Direct observation of quadruple spin-texture locking in a 2D d-wave altermagnet
First atomic-scale evidence of d-wave spin-lattice locking and a new spin-stripe locking in RbV2Se2O establishes quadruple spin-texture locking in a 2D altermagnet.
-
Real-space identification of distinct magnetic configurations in a candidate d-wave altermagnet
Atomic-scale STM identifies both C-type (d-wave altermagnetic) and G-type (antiferromagnetic) magnetic configurations in KV2Se2O, both generating similar spin-split electronic structures.
-
Negative Differential Resistance and Ultra-High TMR in Altermagnetic Tunnel Junctions
Altermagnetic tunnel junctions based on KV2Se2O exhibit low-bias negative differential resistance and sign-inverting ultra-high TMR due to the material's quasi-2D Fermi surface.
-
Anomalous thermoelectric and thermal Hall effects in irradiated altermagnets
Elliptically polarized light irradiation converts d-wave altermagnets into Chern insulators, yielding quantized thermal Hall conductivity and gap-edge peaks in the thermoelectric Hall response.
-
Pressure-Induced Superconducting-like Transition in the $\it d$-wave Altermagnet Candidate CsV$_2$Se$_2$O
Pressure suppresses the density-wave feature in the d-wave altermagnet candidate CsV2Se2O and induces a reproducible, field-suppressible resistive downturn below 3 K suggestive of superconductivity.
-
Global magnetic phase diagram and multiple unconventional magnets in NiAs-type compounds
A J1-J2-J3 Heisenberg model plus DFT yields a global phase diagram for NiAs-type compounds that includes new g-wave altermagnets, f-wave OPMs, and mixed-parity states dominated by f-wave in CrSe and CrTe1-xSex.
-
Robust realization of spin-polarized specular Andreev reflection in V$_2$O-based altermagnets
V2O-based altermagnets enable robust spin-polarized specular Andreev reflection in superconductor junctions, detectable via nonlocal conductance in a multiterminal geometry.