arXiv · cond-mat/0001431
The g-factors of discrete levels in nanoparticles
Abstract
Spin-orbit scattering suppresses Zeeman splitting of individual energy levels in small metal particles. This suppression becomes significant when the spin-orbit scattering rate τ_{so}^{-1} is comparable with the quantum level spacing δ. The g-factor exhibits mesoscopic fluctuations; at small δτ_{so} it is distributed according to the Maxwell distribution. At δτ_{so}\to 0 the average g-factor levels off at a small value g\sim(l/L)^{1/2} given by the ratio of the electron mean free path l to the particle size L. On the contrary, in 2D quantum dots the g-factor is strongly enhanced by spin-orbit coupling.
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K. A. Matveev, L. I. Glazman, A. I. Larkin. 2000-01-29. The g-factors of discrete levels in nanoparticles. https://doi.org/10.1103/physrevlett.85.2789
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