Nonlinear spin current generation in noncentrosymmetric spin-orbit coupled systems
被引:68
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作者:
Hamamoto, Keita
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Univ Tokyo, Dept Appl Phys, Tokyo 1138656, JapanUniv Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
Hamamoto, Keita
[1
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Ezawa, Motohiko
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Univ Tokyo, Dept Appl Phys, Tokyo 1138656, JapanUniv Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
Ezawa, Motohiko
[1
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Kim, Kun Woo
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Korea Inst Adv Study, Sch Phys, Seoul 02455, South KoreaUniv Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
Kim, Kun Woo
[2
]
Morimoto, Takahiro
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Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USAUniv Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
Morimoto, Takahiro
[3
]
Nagaosa, Naoto
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Univ Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
RIKEN, Ctr Emergent Matter Sci, Wako, Saitama 3510198, JapanUniv Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
Nagaosa, Naoto
[1
,4
]
机构:
[1] Univ Tokyo, Dept Appl Phys, Tokyo 1138656, Japan
[2] Korea Inst Adv Study, Sch Phys, Seoul 02455, South Korea
[3] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA
[4] RIKEN, Ctr Emergent Matter Sci, Wako, Saitama 3510198, Japan
Spin current plays a central role in spintronics. In particular, finding more efficientways to generate spin current has been an important issue and has been studied actively. For example, representative methods of spin-current generation include spin-polarized current injections from ferromagnetic metals, the spin Hall effect, and the spin battery. Here, we theoretically propose a mechanism of spin-current generation based on nonlinear phenomena. By using Boltzmann transport theory, we showthat a simple application of the electric field E induces spin current proportional to E-2 in noncentrosymmetric spin-orbit coupled systems. We demonstrate that the nonlinear spin current of the proposed mechanism is supported in the surface state of three-dimensional topological insulators and two-dimensional semiconductors with the Rashba and/or Dresselhaus interaction. In the latter case, the angular dependence of the nonlinear spin current can be manipulated by the direction of the electric field and by the ratio of the Rashba and Dresselhaus interactions. We find that the magnitude of the spin current largely exceeds those in the previous methods for a reasonable magnitude of the electric field. Furthermore, we show that application of ac electric fields (e.g., terahertz light) leads to the rectifying effect of the spin current, where dc spin current is generated. These findings will pave a route to manipulate the spin current in noncentrosymmetric crystals.
机构:
Ernst Moritz Arndt Univ Greifswald, Inst Phys, D-17489 Greifswald, GermanyUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
Lange, Florian
Ejima, Satoshi
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机构:
Ernst Moritz Arndt Univ Greifswald, Inst Phys, D-17489 Greifswald, Germany
RIKEN Cluster Pioneering Res CPR, Wako, Saitama 3510198, JapanUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
Ejima, Satoshi
Shirakawa, Tomonori
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机构:
RIKEN Ctr Computat Sci R CCS, Kobe, Hyogo 6500047, Japan
RIKEN Ctr Quantum Comp RQC, Wako, Saitama 3510198, JapanUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
Shirakawa, Tomonori
Fehske, Holger
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机构:
Ernst Moritz Arndt Univ Greifswald, Inst Phys, D-17489 Greifswald, GermanyUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
Fehske, Holger
Yunoki, Seiji
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h-index: 0
机构:
RIKEN Cluster Pioneering Res CPR, Wako, Saitama 3510198, Japan
RIKEN Ctr Computat Sci R CCS, Kobe, Hyogo 6500047, Japan
RIKEN Ctr Quantum Comp RQC, Wako, Saitama 3510198, Japan
RIKEN Ctr Emergent Matter Sci CEMS, Wako, Saitama 3510198, JapanUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
Yunoki, Seiji
Maekawa, Sadamichi
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机构:
Univ Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China
RIKEN Ctr Emergent Matter Sci CEMS, Wako, Saitama 3510198, JapanUniv Chinese Acad Sci, Kavli Inst Theoret Sci, Beijing 100190, Peoples R China