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We calculate the nonequilibrium conductance through a molecule or a quantum dot in which the occupation of the relevant electronic level is coupled with intensity $\lambda$ to a phonon mode, and also to two conducting leads. The system is…

强关联电子 · 物理学 2015-06-15 P. Roura-Bas , L. Tosi , A. A. Aligia

The conductance through a mesoscopic system of interacting electrons coupled to two adjacent leads is conventionally derived via the Keldysh nonequilibrium Green's function technique, in the limit of noninteracting leads [see Y. Meir…

强关联电子 · 物理学 2012-08-16 Yuan Li , Mansoor B. A. Jalil , Seng Ghee Tan

We calculate conductance through a quantum dot weakly coupled to metallic contacts by means of Keldysh out of equilibrium formalism. We model the quantum dot with the SU(2) Anderson model and consider the limit of infinite Coulomb…

强关联电子 · 物理学 2015-03-19 Leandro Tosi , Pablo Roura-Bas , Ana María Llois , Armando A. Aligia

The infinite-U Anderson model is applied to transport through a quantum dot. The current and density of states are obtained via the non-crossing approximation for two spin-degenerate levels weakly coupled to two leads. At low temperatures,…

凝聚态物理 · 物理学 2009-10-22 Ned S. Wingreen , Yigal Meir

We show that an Anderson Hamiltonian describing a quantum dot connected to multiple leads is integrable. A general expression for the non-linear conductance is obtained by combining the Bethe ansatz exact solution with Landauer-B\"uttiker…

介观与纳米尺度物理 · 物理学 2009-11-10 Sam Young Cho , Huan-Qiang Zhou , Ross H. McKenzie

We study the Anderson model in which a configuration with a doublet is hybridized with another with a singlet and a triplet. We calculate the conductance through the system as a function of temperature and bias voltage, near the quantum…

强关联电子 · 物理学 2009-07-25 P. Roura Bas , A. A. Aligia

We extend a perturbative, nonequilibrium renormalization group approach to multi-orbital systems and apply it for studying transport through two parallel quantum dots coupled electrostatically. In general, the conductance shows pronounced…

强关联电子 · 物理学 2007-05-23 Y. -F. Yang , K. Held

We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the spin 1/2 Anderson model. We adopt the finite-U extension of the noncrossing approximation method. Our results are in good agreement with…

强关联电子 · 物理学 2007-05-23 D. Gerace , E. Pavarini , L. C. Andreani

The paper deals with the nonequilibrium two-lead Anderson model, considered as an adequate description for transport through a d-c biased quantum dot. Using a self-consistent equation-of-motion method generalized out of equilibrium, we…

强关联电子 · 物理学 2011-03-11 Raphaël Van Roermund , Shiue-yuan Shiau , Mireille Lavagna

We analyze universal transport properties of a strongly interacting quantum dot in the Kondo regime when the quantum dot is placed in an external magnetic field. The quantum dot is described by the asymmetric Anderson model with the spin…

介观与纳米尺度物理 · 物理学 2013-07-30 Sergey Smirnov , Milena Grifoni

We calculate the finite temperature and non-equilibrium electric current through systems described generically at low energy by a singlet and \emph{two} spin doublets for $N$ and $N \pm 1$ electrons respectively, coupled asymmetrically to…

强关联电子 · 物理学 2011-08-24 P. Roura-Bas , L. Tosi , A. A. Aligia , K. Hallberg

The eigenstates of an isolated nanostructure may get mixed by the coupling to external leads. This effect is the stronger, the smaller the level splitting on the dot and the larger the broadening induced by the coupling to the leads. We…

强关联电子 · 物理学 2008-04-22 V. Koerting , J. Paaske , P. Wölfle

We apply a two-particle semi-analytic approach to a single Anderson impurity attached to two biased metallic leads. The theory is based on reduced parquet equations justified in critical regions of singularities in the Bethe-Salpeter…

强关联电子 · 物理学 2022-02-23 Jiawei Yan , Václav Janiš

We study the differential conductance in the Kondo regime of a quantum dot coupled to multiple leads. When the bias is applied symmetrically on two of the leads ($V$ and $-V$, as usual in experiments), while the others are grounded, the…

介观与纳米尺度物理 · 物理学 2009-11-13 M. Tolea , I. V. Dinu , A. Aldea

The out-of-equilibrium transport properties of a double quantum dot system in the Kondo regime are studied theoretically by means of a two-impurity Anderson Hamiltonian with inter-impurity hopping. The Hamiltonian, formulated in slave-boson…

介观与纳米尺度物理 · 物理学 2009-11-07 Ramon Aguado , David C. Langreth

The M-channel Anderson impurity model (M=1,2) is studied in the Kondo limit with a finite voltage bias applied to the conduction electron reservoirs. Using the Non-Crossing Approximation (NCA), we calculate the local spectral functions, the…

介观与纳米尺度物理 · 物理学 2009-10-30 M. H. Hettler , J. Kroha , S. Hershfield

Nonequilibrium electronic transport through a quantum dot coupled to ferromagnetic leads (electrodes) is studied theoretically by the nonequilibrium Green function technique. The system is described by the Anderson model with arbitrary…

介观与纳米尺度物理 · 物理学 2009-11-11 R. Swirkowicz , M. Wilczynski , J. Barnas

The conductance through a serial double dot structure for which the inter-dot tunneling is stronger than the tunneling to the leads is studied using the numerical density matrix renormalization group method and analytic arguments. When the…

介观与纳米尺度物理 · 物理学 2007-05-23 Richard Berkovits , Boris Altshuler

In this work we analyze the nonequilibrium transport through a quantum impurity (quantum dot or molecule) attached to ferromagnetic leads by using a hybrid numerical renormalization group-time-dependent density matrix renormalization group…

介观与纳米尺度物理 · 物理学 2022-10-05 Anand Manaparambil , Andeas Weichselbaum , Jan von Delft , Ireneusz Weymann , .

We investigate the equilibrium and out-of-equilibrium Kondo effects in a single-level interacting quantum dot connected to two ferromagnetic leads. Within the non-crossing approximation, we calculate the total density of states (DOS), the…

介观与纳米尺度物理 · 物理学 2009-11-10 Bing Dong , H. L. Cui , S. Y. Liu , X. L. Lei
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