g-factors of discrete levels in nanoparticles

Citation
Ka. Matveev et al., g-factors of discrete levels in nanoparticles, PHYS REV L, 85(13), 2000, pp. 2789-2792
Citations number
10
Categorie Soggetti
Physics
Journal title
PHYSICAL REVIEW LETTERS
ISSN journal
00319007 → ACNP
Volume
85
Issue
13
Year of publication
2000
Pages
2789 - 2792
Database
ISI
SICI code
0031-9007(20000925)85:13<2789:GODLIN>2.0.ZU;2-B
Abstract
Spin-orbit scattering suppresses Zeeman splitting of individual energy leve ls in small metal particles. This suppression becomes significant when the spin-orbit scattering rate tau(so)(-1) is comparable to the quantum level s pacing delta. At small delta tau(so) the g-factor exhibits strong mesoscopi c fluctuations. We find the shape of their distribution function using the random matrix theory, and express its parameters in terms of physical chara cteristics: tau(so), delta, the electron mean free path l, and the particle size L. At delta tau(so) --> 0 the average g-factor levels off at a small value g similar to (l/L)(1/2). However, in 2D quantum dots the g-factor is strongly enhanced by spin-orbit coupling.