Unique Spin Vortices and Topological Charges in Quantum Dots with Spin-orbit Couplings

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Abstract

Spin textures of one or two electrons in a quantum dot with Rashba or Dresselhaus spin-orbit couplings reveal several intriguing properties. We show here that even at the single-electron level stable spin vortices with tunable topological charges exist. These topological textures appear in the ground state of the dots. The textures are stabilized by time-reversal symmetry breaking and are robust against the eccentricity of the dot. The topological charge is directly related to the sign of the z component of the spin in a large dot, allowing a direct probe of its topological properties. This would clearly pave the way to possible future topological spintronics. The phenomenon of spin vortices persists for the interacting two-electron dot in the presence of a magnetic field.

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Luo, W., Naseri, A., Sirker, J., & Chakraborty, T. (2019). Unique Spin Vortices and Topological Charges in Quantum Dots with Spin-orbit Couplings. Scientific Reports, 9(1). https://doi.org/10.1038/s41598-018-35837-y

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