Spin Resonance and dc Current Generation in a Quantum Wire
arXiv:0911.2433 · doi:10.1103/PhysRevB.85.085311
Abstract
We show that in a quantum wire the spin-orbit interaction leads to a narrow spin resonance at low temperatures, even in the absence of an external magnetic field. Resonance absorption by linearly polarized radiation gives a dc spin current; resonance absorption by circularly polarized radiation gives a dc electric current or magnetization.
References in corpus (5)
- Orbital mechanisms of electron spin manipulation by an electric field
- Fermi-Luttinger liquid: Spectral function of interacting one-dimensional fermions
- THz-pump -- THz-probe spectroscopy of semiconductors at high field strengths
- Zeeman splitting in ballistic hole quantum wires
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Cited by in corpus (6)
- Photocurrents in Weyl semimetals
- Spinon magnetic resonance of quantum spin liquids
- Spin resonance in Luttinger liquid with spin-orbit interaction
- Interplay of spin-orbit coupling and Zeeman splitting in the absorption lineshape of 2D fermions
- Spin Correlations in Quantum Wires
- Synergetic effect of spin-orbit coupling and Zeeman splitting on the optical conductivity in the one-dimensional Hubbard model