Spin Currents in Rashba Altermagnets: From Equilibrium to Nonlinear Regimes
arXiv:2506.13890 · doi:10.1103/jqg2-fpk3
Abstract
We investigate equilibrium (background), linear, and nonlinear spin currents in two-dimensional Rashba spin-orbit coupled altermagnet systems, using a modified spin current operator that includes anomalous velocity from non-zero Berry curvature. The background spin current, stemming from spin-orbit coupling and modulated by the altermagnet term (), exhibits in-plane polarization, increases linearly with Fermi energy (), and is enhanced by both the altermagnet () and the Rashba parameter (). Linear spin current is always transverse with out-of-plane polarization and can be viewed as Spin Hall current, primarily driven by band velocity, with enabling a band-induced contribution (previously absent in simple Rashba systems ()). This highlights altermagnet system as a promising source of spin Hall current generation. For linear spin Hall current, its band contribution's magnitude increases linearly with , while the magnitude of anomalous component saturates at higher . Further, the magnitude of spin Hall current is enhanced by but reduced by . Nonlinear spin currents feature both longitudinal and transverse components with in-plane polarization. Both the nonlinear longitudinal spin current from band velocity and the nonlinear transverse spin current from anomalous velocity initially decrease with before saturating at higher . Importantly, reduces these currents while enhances them. Meanwhile, the nonlinear transverse current from band velocity increases and then saturates with , enhanced by and showing non-monotonic variation with . These findings highlight the tunability of spin current behavior through Rashba and altermagnet parameters, offering insights for spintronic applications.
15 pages, 8 figures
References in corpus (38)
- Theory of magnon-driven spin Seebeck effect
- Observation of the Anomalous Hall Effect in a Collinear Antiferromagnet
- Giant momentum-dependent spin splitting in centrosymmetric low Z antiferromagnets
- Efficient Electrical Spin-Splitter Based on Non-Relativistic Collinear Antiferromagnetism
- Momentum-Dependent Spin Splitting by Collinear Antiferromagnetic Ordering
- Multifunctional Antiferromagnetic Materials with Giant Piezomagnetism and Noncollinear Spin Current
- Observation of spin splitting torque in a collinear antiferromagnet RuO2
- Giant and tunneling magnetoresistance effects from anisotropic and valley-dependent spin-momentum interactions in antiferromagnets
- Tilted spin current generated by the collinear antiferromagnet RuO2
- Spontaneous anomalous Hall effect arising from an unconventional compensated magnetic phase in a semiconductor
- Observation of spin-splitter torque in collinear antiferromagnetic RuO
- Bottom-up design of spin-split and reshaped electronic band structures in spin-orbit-coupling free antiferromagnets: Procedure on the basis of augmented multipoles
- Observation of Giant Band Splitting in Altermagnetic MnTe
- Crystal Thermal Transport in Altermagnetic RuO2
- Topological Superconductivity in Two-Dimensional Altermagnetic Metals
- Persistent current in ballistic mesoscopic rings with Rashba spin-orbit coupling
- Twisted Magnetic Van der Waals Bilayers: An Ideal Platform for Altermagnetism
- Three-dimensional mapping of the altermagnetic spin splitting in CrSb
- Altermagnetic Routes to Majorana Modes in Zero Net Magnetization
- Spin Space Groups: Full Classification and Applications
- Spontaneous Antisymmetric Spin Splitting in Noncollinear Antiferromagnets without Spin-Orbit Coupling
- Quantum Anomalous Hall Effect in Antiferromagnetism
- Majorana corner modes and tunable patterns in an altermagnet heterostructure
- Two-dimensional altermagnets from high throughput computational screening: symmetry requirements, chiral magnons and spin-orbit effects
- Nonlinear valley and spin currents from Fermi pocket anisotropy in 2D crystals
- Nonlinear spin current generation in noncentrosymmetric spin-orbit coupled systems
- Electrically Controllable Crystal Chirality Magneto-Optical Effects in Collinear Antiferromagnets
- Description of two-dimensional altermagnetism: Categorization using spin group theory
- Creation and Manipulation of Higher-Order Topological States by Altermagnets
- Spin Accumulation and Equilibrium Currents at the Edge of 2DEGs with Spin-Orbit Coupling
- AI-accelerated Discovery of Altermagnetic Materials
- Superconducting phenomena in systems with unconventional magnets
- Giant strain-induced spin splitting effect in MnTe, a -wave altermagnetic semiconductor
- Large intrinsic anomalous Hall effect in both NbFeB and TaFeB with collinear antiferromagnetism
- RKKY interaction in Rashba altermagnets
- Role of Berry curvature in the generation of spin currents in Rashba systems
- Majorana-like localized spin density without bound states in topologically trivial spin-orbit coupled nanowires
- Spin relaxation and transport behaviors in altermagnetic systems