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Yuriy Mokrousov

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Articles 45
Citations 474
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Recent Articles
1.
Ledesma-Martin J, Galindez-Ruales E, Krishnia S, Fuhrmann F, Tran M, Gupta R, et al.
Nano Lett . 2025 Feb; 25(8):3247-3252. PMID: 39953375
In magnetic systems, angular momentum is carried by spin and orbital degrees of freedom. Nonlocal devices, comprising heavy-metal nanowires on magnetic insulators like yttrium iron garnet (YIG), enable angular momentum...
2.
Moriya H, Taniguchi M, Jo D, Go D, Soya N, Hayashi H, et al.
Nano Lett . 2024 May; 24(22):6459-6464. PMID: 38780051
The generation of current-induced torques through the spin Hall effect in Pt has been key to the development of spintronics. In prototypical ferromagnetic-metal/Pt devices, the characteristic length of the torque...
3.
Chen Z, Li R, Bai Y, Mao N, Zeer M, Go D, et al.
Nano Lett . 2024 Apr; PMID: 38619844
Recent advances in the manipulation of the orbital angular momentum (OAM) within the paradigm of orbitronics presents a promising avenue for the design of future electronic devices. In this context,...
4.
Zhou X, Feng W, Zhang R, Smejkal L, Sinova J, Mokrousov Y, et al.
Phys Rev Lett . 2024 Feb; 132(5):056701. PMID: 38364129
We demonstrate the emergence of a pronounced thermal transport in the recently discovered class of magnetic materials-altermagnets. From symmetry arguments and first-principles calculations performed for the showcase altermagnet, RuO_{2}, we...
5.
Li Z, Zhang R, Shan J, Alahmed L, Xu A, Chen Y, et al.
Nano Lett . 2024 Feb; 24(7):2415-2420. PMID: 38323579
Electrostatic gating has emerged as a powerful technique for tailoring the magnetic properties of two-dimensional (2D) magnets, offering exciting prospects including enhancement of magnetic anisotropy, boosting Curie temperature, and strengthening...
6.
Seifert T, Go D, Hayashi H, Rouzegar R, Freimuth F, Ando K, et al.
Nat Nanotechnol . 2023 Aug; 18(10):1254. PMID: 37605046
No abstract available.
7.
Seifert T, Go D, Hayashi H, Rouzegar R, Freimuth F, Ando K, et al.
Nat Nanotechnol . 2023 Aug; 18(10):1132-1138. PMID: 37550573
The emerging field of orbitronics exploits the electron orbital momentum L. Compared to spin-polarized electrons, L may allow the transfer of magnetic information with considerably higher density over longer distances...
8.
Kammerbauer F, Choi W, Freimuth F, Lee K, Fromter R, Han D, et al.
Nano Lett . 2023 Jul; 23(15):7070-7075. PMID: 37466639
The recently discovered interlayer Dzyaloshinskii-Moriya interaction (IL-DMI) in multilayers with perpendicular magnetic anisotropy favors canting of spins in the in-plane direction. It could thus stabilize intriguing spin textures such as...
9.
Go D, Jo D, Kim K, Lee S, Kang M, Park B, et al.
Phys Rev Lett . 2023 Jun; 130(24):246701. PMID: 37390424
While it is often assumed that the orbital response is suppressed and short ranged due to strong crystal field potential and orbital quenching, we show that the orbital response can...
10.
Shao Q, Li P, Liu L, Yang H, Fukami S, Razavi A, et al.
IEEE Trans Magn . 2023 Apr; 57(7). PMID: 37057056
Spin-orbit torque (SOT) is an emerging technology that enables the efficient manipulation of spintronic devices. The initial processes of interest in SOTs involved electric fields, spin-orbit coupling, conduction electron spins...