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Correlation of the Dzyaloshinskii–Moriya interaction with Heisenberg exchange and orbital asphericity
by
Kim, Duck-Ho
, Moriyama, Takahiro
, Lee, Kyung-Jin
, Suzuki, Motohiro
, Yamada, Kihiro. T.
, Ono, Teruo
, Jang, Peong-Hwa
, Nakamura, Tetsuya
, Kim, Sanghoon
, Go, Gyungchoon
, Kim, Kab-Jin
, Manchon, Aurelien
, Chiba, Daichi
, Belabbes, Abderrezak
, Kotani, Yoshinori
, Nakamura, Kohji
, Koyama, Tomohiro
, Ueda, Kohei
in
639/301/119/2793
/ 639/766/119/1001
/ Anisotropy
/ Asphericity
/ Broken symmetry
/ Correlation analysis
/ Density functional theory
/ Dipole moments
/ Domain walls
/ Ferromagnetism
/ Heavy metals
/ Humanities and Social Sciences
/ Hypothetical particles
/ Magnetic dipoles
/ Magnetic fields
/ Magnetic moments
/ Magnetism
/ multidisciplinary
/ Particle theory
/ Physics
/ Science
/ Science (multidisciplinary)
2018
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Correlation of the Dzyaloshinskii–Moriya interaction with Heisenberg exchange and orbital asphericity
by
Kim, Duck-Ho
, Moriyama, Takahiro
, Lee, Kyung-Jin
, Suzuki, Motohiro
, Yamada, Kihiro. T.
, Ono, Teruo
, Jang, Peong-Hwa
, Nakamura, Tetsuya
, Kim, Sanghoon
, Go, Gyungchoon
, Kim, Kab-Jin
, Manchon, Aurelien
, Chiba, Daichi
, Belabbes, Abderrezak
, Kotani, Yoshinori
, Nakamura, Kohji
, Koyama, Tomohiro
, Ueda, Kohei
in
639/301/119/2793
/ 639/766/119/1001
/ Anisotropy
/ Asphericity
/ Broken symmetry
/ Correlation analysis
/ Density functional theory
/ Dipole moments
/ Domain walls
/ Ferromagnetism
/ Heavy metals
/ Humanities and Social Sciences
/ Hypothetical particles
/ Magnetic dipoles
/ Magnetic fields
/ Magnetic moments
/ Magnetism
/ multidisciplinary
/ Particle theory
/ Physics
/ Science
/ Science (multidisciplinary)
2018
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Correlation of the Dzyaloshinskii–Moriya interaction with Heisenberg exchange and orbital asphericity
by
Kim, Duck-Ho
, Moriyama, Takahiro
, Lee, Kyung-Jin
, Suzuki, Motohiro
, Yamada, Kihiro. T.
, Ono, Teruo
, Jang, Peong-Hwa
, Nakamura, Tetsuya
, Kim, Sanghoon
, Go, Gyungchoon
, Kim, Kab-Jin
, Manchon, Aurelien
, Chiba, Daichi
, Belabbes, Abderrezak
, Kotani, Yoshinori
, Nakamura, Kohji
, Koyama, Tomohiro
, Ueda, Kohei
in
639/301/119/2793
/ 639/766/119/1001
/ Anisotropy
/ Asphericity
/ Broken symmetry
/ Correlation analysis
/ Density functional theory
/ Dipole moments
/ Domain walls
/ Ferromagnetism
/ Heavy metals
/ Humanities and Social Sciences
/ Hypothetical particles
/ Magnetic dipoles
/ Magnetic fields
/ Magnetic moments
/ Magnetism
/ multidisciplinary
/ Particle theory
/ Physics
/ Science
/ Science (multidisciplinary)
2018
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Correlation of the Dzyaloshinskii–Moriya interaction with Heisenberg exchange and orbital asphericity
Journal Article
Correlation of the Dzyaloshinskii–Moriya interaction with Heisenberg exchange and orbital asphericity
2018
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Overview
Chiral spin textures of a ferromagnetic layer in contact to a heavy non-magnetic metal, such as Néel-type domain walls and skyrmions, have been studied intensively because of their potential for future nanomagnetic devices. The Dyzaloshinskii–Moriya interaction (DMI) is an essential phenomenon for the formation of such chiral spin textures. In spite of recent theoretical progress aiming at understanding the microscopic origin of the DMI, an experimental investigation unravelling the physics at stake is still required. Here we experimentally demonstrate the close correlation of the DMI with the anisotropy of the orbital magnetic moment and with the magnetic dipole moment of the ferromagnetic metal in addition to Heisenberg exchange. The density functional theory and the tight-binding model calculations reveal that inversion symmetry breaking with spin–orbit coupling gives rise to the orbital-related correlation. Our study provides the experimental connection between the orbital physics and the spin–orbit-related phenomena, such as DMI.
Dzyaloshinskii–Moriya interaction (DMI) is one of the key factors to control the chiral spin textures in spintronic applications. Here the authors demonstrate the correlation of the DMI with the anisotropy of the orbital magnetic moment and magnetic dipole moment in Pt/Co/MgO ultrathin trilayers.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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