Cite this article:
Liang Chen, Feng Li, Xiao-Ming Ding. Rashba spin–orbit coupling induced rectified currents in monolayer graphene with exchange field and sublattice potentialJ. Chin. Phys. B, 2023, 32(8): 087103.
| Liang Chen, Feng Li, Xiao-Ming Ding. Rashba spin–orbit coupling induced rectified currents in monolayer graphene with exchange field and sublattice potentialJ. Chin. Phys. B, 2023, 32(8): 087103. |
Rashba spin–orbit coupling induced rectified currents in monolayer graphene with exchange field and sublattice potential
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Abstract
We investigate the effect of Rashba spin–orbit coupling (RSOC) on photoconductivities of rectified currents in monolayer graphene with exchange field and sublattice potential. The system shows that the photoconductivities of resonant shift and injection current contributions are nonzero, while the photoconductivities of non-resonant shift current contribution are zero. We find that the RSOC induces a warping term, which leads to the nonzero rectified currents. Moreover, the photoconductivities of resonant injection (shift) current contribution are (not) related to the relaxation rate. The similar behavior can be found in other Dirac materials, and our findings provide a way to tune the nonlinear transport properties of Dirac materials. -
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