Quantum phase transition and Coulomb blockade effect in triangular quantum dots with interdot capacitive and tunnel couplings |
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Authors: | Xiong Yong-Chen Wang Wei-Zhong Yang Jun-Tao Huang Hai-Ming |
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Affiliation: | a School of Science, Hubei University of Automotive Technology (HUAT), Shiyan 442002, China;b Department of Physics, Wuhan University, Wuhan 430072, China;c Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education, Wuhan 430072, China |
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Abstract: | The quantum phase transition and the electronic transport in a triangular quantum dot system are investigated using the numerical renormalization group method.We concentrate on the interplay between the interdot capacitive coupling V and the interdot tunnel coupling t.For small t,three dots form a local spin doublet.As t increases,due to the competition between V and t,there exist two first-order transitions with phase sequence spin-doublet-magnetic frustration phase-orbital spin singlet.When t is absent,the evolutions of the total charge on the dots and the linear conductance are of the typical Coulomb-blockade features with increasing gate voltage.While for sufficient t,the antiferromagnetic spin correlation between dots is enhanced,and the conductance is strongly suppressed for the bonding state is almost doubly occupied. |
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Keywords: | quantum phase transition Coulomb blockade effect triangular quantum dots strongly correlated system |
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