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arxiv: cond-mat/0407251 · v1 · submitted 2004-07-09 · ❄️ cond-mat.str-el

Thermoelectric power in one-dimensional Hubbard model

classification ❄️ cond-mat.str-el
keywords modelhalf-fillinghubbardone-dimensionalpowerthermoelectricalthoughapproaching
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The thermoelectric power S is studied within the one-dimensional Hubbard model using the linear response theory and the numerical exact-diagonalization method for small systems. While both the diagonal and off-diagonal dynamical correlation functions of particle and energy current are singular within the model even at temperature T>0, S behaves regularly as a function of frequency $\omega$ and T. Dependence on the electron density n below the half-filling reveals a change of sign of S at n_0=0.73+/-0.07 due to strong correlations, in the whole T range considered. Approaching half-filling S is hole-like and can become large for U>>t although decreasing with T.

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