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Nature Nanotechnology
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August 21, 2023
Publisher Correction: Time-domain observation of ballistic orbital-angular-momentum currents with giant relaxation length in tungsten
Tom S Seifert, Dongwook Go, Hiroki Hayashi, et al.
Nature Nanotechnology
|
August 7, 2023
Time-domain observation of ballistic orbital-angular-momentum currents with giant relaxation length in tungsten
Tom S Seifert, Dongwook Go, Hiroki Hayashi, et al.
Scientific Reports
|
April 26, 2017
Toward surface orbitronics: giant orbital magnetism from the orbital Rashba effect at the surface of sp-metals
Dongwook Go, Jan-Philipp Hanke, Patrick M Buhl, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
March 21, 2013
Anisotropy of spin relaxation and transverse transport in metals
Yuriy Mokrousov, Hongbin Zhang, Frank Freimuth, et al.
Nature Nanotechnology
|
July 30, 2013
Symmetry and magnitude of spin-orbit torques in ferromagnetic heterostructures
Kevin Garello, Ioan Mihai Miron, Can Onur Avci, et al.
Physical Review Research
|
March 3, 2021
Theory of Current-Induced Angular Momentum Transfer Dynamics in Spin-Orbit Coupled Systems
Dongwook Go, Frank Freimuth, Jan-Philipp Hanke, et al.
Nano Letters
|
July 19, 2023
Controlling the Interlayer Dzyaloshinskii-Moriya Interaction by Electrical Currents
Fabian Kammerbauer, Won-Young Choi, Frank Freimuth, et al.
Physical Review Letters
|
November 6, 2020
Harnessing Orbital-to-Spin Conversion of Interfacial Orbital Currents for Efficient Spin-Orbit Torques
Shilei Ding, Andrew Ross, Dongwook Go, et al.
Nature Communications
|
March 5, 2021
Author Correction: Faster chiral versus collinear magnetic order recovery after optical excitation revealed by femtosecond XUV scattering
Nico Kerber, Dmitriy Ksenzov, Frank Freimuth, et al.
Nature Communications
|
December 10, 2020
Faster chiral versus collinear magnetic order recovery after optical excitation revealed by femtosecond XUV scattering
Nico Kerber, Dmitriy Ksenzov, Frank Freimuth, et al.
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of 3
Search research articles
Search
Showing results (11-20 of 23) with videos related to
Sort By:
Page
of 3
Nature Nanotechnology
|
August 21, 2023
Publisher Correction: Time-domain observation of ballistic orbital-angular-momentum currents with giant relaxation length in tungsten
Tom S Seifert, Dongwook Go, Hiroki Hayashi, et al.
Nature Nanotechnology
|
August 7, 2023
Time-domain observation of ballistic orbital-angular-momentum currents with giant relaxation length in tungsten
Tom S Seifert, Dongwook Go, Hiroki Hayashi, et al.
Scientific Reports
|
April 26, 2017
Toward surface orbitronics: giant orbital magnetism from the orbital Rashba effect at the surface of sp-metals
Dongwook Go, Jan-Philipp Hanke, Patrick M Buhl, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
March 21, 2013
Anisotropy of spin relaxation and transverse transport in metals
Yuriy Mokrousov, Hongbin Zhang, Frank Freimuth, et al.
Nature Nanotechnology
|
July 30, 2013
Symmetry and magnitude of spin-orbit torques in ferromagnetic heterostructures
Kevin Garello, Ioan Mihai Miron, Can Onur Avci, et al.
Physical Review Research
|
March 3, 2021
Theory of Current-Induced Angular Momentum Transfer Dynamics in Spin-Orbit Coupled Systems
Dongwook Go, Frank Freimuth, Jan-Philipp Hanke, et al.
Nano Letters
|
July 19, 2023
Controlling the Interlayer Dzyaloshinskii-Moriya Interaction by Electrical Currents
Fabian Kammerbauer, Won-Young Choi, Frank Freimuth, et al.
Physical Review Letters
|
November 6, 2020
Harnessing Orbital-to-Spin Conversion of Interfacial Orbital Currents for Efficient Spin-Orbit Torques
Shilei Ding, Andrew Ross, Dongwook Go, et al.
Nature Communications
|
March 5, 2021
Author Correction: Faster chiral versus collinear magnetic order recovery after optical excitation revealed by femtosecond XUV scattering
Nico Kerber, Dmitriy Ksenzov, Frank Freimuth, et al.
Nature Communications
|
December 10, 2020
Faster chiral versus collinear magnetic order recovery after optical excitation revealed by femtosecond XUV scattering
Nico Kerber, Dmitriy Ksenzov, Frank Freimuth, et al.
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of 3