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arXiv:1008.1262 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Quantum Phase Transition and Dynamically Enhanced Symmetry in Quadruple Quantum Dot System

Dong E. Liu, Shailesh Chandrasekharan, Harold U. Baranger

Published 2010-08-06Version 1

We propose a system of four quantum dots designed to study the competition between three types of interactions: Heisenberg, Kondo and Ising. We find a rich phase diagram containing two sharp features: a quantum phase transition (QPT) between charge-ordered and charge-liquid phases, and a dramatic resonance in the charge liquid visible in the conductance. The QPT is of the Kosterlitz-Thouless type with a discontinuous jump in the conductance at the transition. We connect the resonance phenomenon with the degeneracy of three levels in the isolated quadruple dot and argue that this leads to a Kondo-like dynamical enhancement of symmetry from U(1) x Z_2 to U(1) x U(1).

Comments: 4 pages main text + 4 pages supplementary material
Journal: Phys. Rev. Lett. 105, 256801 (2010)
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