activity
20162024
most citedSkyrmion Hall Effect Revealed by Direct Time-Resolved X-Ray Microscopy

877 citations · 883 across the 7 of their papers we have counts for

collaborators

9 papers

cond-mat.mtrl-sci20261 cited

Topological textures and emergent altermagnetic signatures in ultrathin BiFeO3

George Fratian, Maya Ramesh, Xinyan Li +23

Magnetoelectric multiferroics, materials with intrinsically coupled electric polarization and magnetic order, promise ultralow-power switching, nonvolatile memory, and energy-effic…

cond-mat.mtrl-sci20252 cited

Colossal enhancement of spin transmission through magnon confinement in an antiferromagnet

Sajid Husain, Maya Ramesh, Xinyan Li +21

Since Felix Bloch's introduction of the concept of spin waves in 1930, magnons (the quanta of spin waves) have been extensively studied in a range of materials for spintronics, par…

cond-mat.mtrl-sci2024

Continuous Collapse of the Spin Cycloid in BiFeO3 Thin Films under an Applied Magnetic Field probed by Neutron Scattering

Md. Firoz Pervez, Hongrui Zhang, Yen-Lin Huang +3

Bismuth ferrite (BiFeO3) is one of the rare materials that exhibits multiferroic properties already at room-temperature. Therefore, it offers tremendous potential for future techno…

cond-mat.mtrl-sci2024

Symmetry-based phenomenological model for magnon transport in a multiferroic

Isaac A. Harris, Sajid Husain, Peter Meisenheimer +9

Magnons carriers of spin information can be controlled by electric fields in the multiferroic BiFeO (BFO), a milestone that brings magnons closer to application in future devic…

cond-mat.mtrl-sci20241 cited

Morphogenesis of Spin Cycloids in a Non-collinear Antiferromagnet

Shashank Kumar Ojha, Pratap Pal, Sergei Prokhorenko +11

Pattern formation in spin systems with continuous-rotational symmetry (CRS) provides a powerful platform to study emergent complex magnetic phases and topological defects in conden…

cond-mat.mtrl-sci2024

Non-volatile spin transport in a single domain multiferroic

Sajid Husain, Isaac Harris, Peter Meisenheimer +22

Antiferromagnets have attracted significant attention in the field of magnonics, as promising candidates for ultralow-energy carriers for information transfer for future computing.…