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Quantum Phase Transition and Ferromagnetic Spin Correlation in Parallel Double Quantum Dots
引用本文:丁国辉 叶飞. Quantum Phase Transition and Ferromagnetic Spin Correlation in Parallel Double Quantum Dots[J]. 中国物理快报, 2007, 24(10): 2926-2929
作者姓名:丁国辉 叶飞
作者单位:[1]Department of Physics, Shanghai Jiao Tong University, Shanghai 200240 [2]Center for Advanced Study, Tsinghua University,Beijing100084
基金项目:Supported by the National Natural Science Foundation of China under Grant No 19975031.
摘    要:We investigate electronic transport through a parallel double quantum dot (DQD) system with strong on-site Coulomb interaction, as well as the interdot tunnelling. By applying numerical renormalization group method, the ground state of the system and the transmission probability at zero temperature are 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 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.

关 键 词:量子点 量子相位 铁磁体 量子学
收稿时间:2007-07-09
修稿时间:2007-07-09

Quantum Phase Transition and Ferromagnetic Spin Correlation in Parallel Double Quantum Dots
DING Guo-Hui,YE Fei. Quantum Phase Transition and Ferromagnetic Spin Correlation in Parallel Double Quantum Dots[J]. Chinese Physics Letters, 2007, 24(10): 2926-2929
Authors:DING Guo-Hui  YE Fei
Affiliation:1.Department of Physics, Shanghai Jiao Tong University, Shanghai 200240; 2. Center for Advanced Study, Tsinghua University,, Beijing 100084
Abstract:We investigate electronic transport through a parallel double quantum dot (DQD) system with strong on-site Coulomb interaction, as well as the interdot tunnelling. By applying numerical renormalization group method, the ground state of the system and the transmission probability at zero temperature are obtained. For a system of quantum dots with degenerate energy levels andsmall 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 (2e2/h) due to the 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.
Keywords:72.15.Qm  73.21.La  73.40.Gk
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