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Interplay of spin-orbit coupling and Zeeman effect probed by Kondo resonance in a carbon nanotube quantum dot
Journal article   Peer reviewed

Interplay of spin-orbit coupling and Zeeman effect probed by Kondo resonance in a carbon nanotube quantum dot

Yann-Wen Lan, K. Aravind, Cen-Shawn Wu, Chieh-Hsiung Kuan, Kuei-Shu Chang-Liao and Chii-Dong Chen
Carbon, Vol.50(10), pp.3748-3752
08/2012

Abstract

The spin orbit interaction in a carbon nanotube is probed by Kondo resonance. Spin orbit interaction lifts level degeneracy and leads to additional satellite current peaks along with the zero-bias Kondo resonance peak. From the positions of satellite peaks, the spin-orbit interaction energy Δ so is determined to be 0.38 meV. In the presence of a parallel magnetic field, the satellite peaks split into two; one follows spin-Zeeman dependence with a g-factor of 1.91 and the other one follows orbital-Zeeman dependence with a 2μ orb value of 170 μeV/T. The zero-bias Kondo resonance peak also displays a spin-Zeeman dependence but has an offset in magnetic field of 2.25 T, consistent with the value of Δ so / 2μ orb obtained independently. © 2012 Elsevier Ltd. All rights reserved.

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