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 Quantum phase transition and underscreened Kondo effect in electron transport through parallel double quantum dots


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We investigate electronic transport through parallel double quantum dotDQD system with strong on-site Coulomb interaction and capacitive interdot coupling. By applying numerical renormalization groupNRG method, the ground state of the system and the transmission probability at zero temperature have been obtained. For a system of quantum dots with degenerate energy levels and small interdot tunnel coupling, the spin correlations between the DQDs is ferromagnetic, and the ground state of the system is a spin 1 triplet state. The linear conductance will reach the unitary limit $2e^2-h$ due to the underscreened Kondo effect at low temperature. As the interdot tunnel coupling increases, there is a quantum phase transition from ferromagnetic to anti-ferromagnetic spin correlation in DQDs and the linear conductance is strongly suppressed.



Autor: Guo-Hui Ding; Fei Ye; Bing Dong

Fuente: https://archive.org/



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