We demonstrate the potential of van der Waals magnets for spintronic applications by reporting long-distance magnon spin transport in the electrically insulating antiferromagnet chromium thiophosphate (CrPS4) with perpendicular magnetic anisotropy. We inject and detect magnon spins nonlocally by Pt contacts and monitor the nonlocal resistance as a function of an in-plane magnetic field up to 7 T. We observe a nonlocal resistance over distances up to at least a micron below the Néel temperature (TN=38 K) close to magnetic field strengths that saturate the sublattice magnetizations.</p
We present a nonlocal spin transport theory for the coupled dynamics of magnetization and lattice vi...
Nambu–Goldstone theorem provides gapless modes to both relativistic and nonrelativistic systems. The...
Magnon eigenmodes in easy-plane antiferromagnetic insulators are linearly polarized and are not expe...
We demonstrate the potential of van der Waals magnets for spintronic applications by reporting long-...
The recent emergence of 2D van der Waals magnets down to atomic-layer thickness provides an exciting...
We present the detection of the spin-flop transition in the antiferromagnetic van der Waals material...
We present the detection of the spin-flop transition in the antiferromagnetic van der Waals material...
We have studied thermally driven magnon spin transport (spin Seebeck effect, SSE) in heterostructure...
International audienceAntiferromagnetic materials can host spin-waves with polarizations ranging fro...
Ferromagnetism in two-dimensional materials presents a promising platform for the development of ult...
Antiferromagnetic materials can host spin-waves with polarizations ranging from circular to linear d...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
We report magnon spin transport in nickel ferrite(NiFe2O4, NFO)/platinum (Pt) bilayer systems at roo...
99 pagesMagnon-mediated spin flow in magnetically ordered insulators enables long-distance spin-base...
Low-power spintronic devices based on the propagation of pure magnonic spin currents in antiferromag...
We present a nonlocal spin transport theory for the coupled dynamics of magnetization and lattice vi...
Nambu–Goldstone theorem provides gapless modes to both relativistic and nonrelativistic systems. The...
Magnon eigenmodes in easy-plane antiferromagnetic insulators are linearly polarized and are not expe...
We demonstrate the potential of van der Waals magnets for spintronic applications by reporting long-...
The recent emergence of 2D van der Waals magnets down to atomic-layer thickness provides an exciting...
We present the detection of the spin-flop transition in the antiferromagnetic van der Waals material...
We present the detection of the spin-flop transition in the antiferromagnetic van der Waals material...
We have studied thermally driven magnon spin transport (spin Seebeck effect, SSE) in heterostructure...
International audienceAntiferromagnetic materials can host spin-waves with polarizations ranging fro...
Ferromagnetism in two-dimensional materials presents a promising platform for the development of ult...
Antiferromagnetic materials can host spin-waves with polarizations ranging from circular to linear d...
The magnetic state of atomically thin semiconducting layered antiferromagnets such as CrI3 and CrCl3...
We report magnon spin transport in nickel ferrite(NiFe2O4, NFO)/platinum (Pt) bilayer systems at roo...
99 pagesMagnon-mediated spin flow in magnetically ordered insulators enables long-distance spin-base...
Low-power spintronic devices based on the propagation of pure magnonic spin currents in antiferromag...
We present a nonlocal spin transport theory for the coupled dynamics of magnetization and lattice vi...
Nambu–Goldstone theorem provides gapless modes to both relativistic and nonrelativistic systems. The...
Magnon eigenmodes in easy-plane antiferromagnetic insulators are linearly polarized and are not expe...