Electronic States and Superconducting Transition Temperature Based on the Tomonaga--Luttinger Liquid in Pr2Ba4Cu7O15-\delta
An NQR experiment revealed superconductivity of Pr 2 Ba 4 Cu 7 O 15-\delta (Pr247) to be realized on CuO double chain layers and suggests possibility of novel one-dimensional (1D) superconductivity. To clarify the nature of the 1D superconductivity, we calculate the band dispersions of Pr247 by usin...
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Veröffentlicht in: | Journal of the Physical Society of Japan 2011-02, Vol.80 (2), p.024708-024708-4 |
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creator | Habaguchi, Tatsuro Ōno, Yoshiaki Du Gh, Hai Ying Sano, Kazuhiro Yamada, Yuh |
description | An NQR experiment revealed superconductivity of Pr 2 Ba 4 Cu 7 O 15-\delta (Pr247) to be realized on CuO double chain layers and suggests possibility of novel one-dimensional (1D) superconductivity. To clarify the nature of the 1D superconductivity, we calculate the band dispersions of Pr247 by using the generalized gradient approximation (GGA). It indicates that Fermi surface of CuO double chains is well described to the electronic structure of a quasi-1D system. Assuming the zigzag Hubbard chain model to be an effective model of the system, we derive tight binding parameters of the model from a fit to the result of GGA. Based on the Tomonaga--Luttinger liquid theory, we estimate transition temperature ($T_{\text{c}}$) of the quasi-1D zigzag Hubbard model from the calculated value of the Luttinger liquid parameter $K_{\rho}$. The result of $T_{\text{c}}$ is consistent with that of experiments in Pr247 and it suggests that the mechanism of the superconductivity is well understood within the concept of the Tomonaga--Luttinger liquid. |
doi_str_mv | 10.1143/JPSJ.80.024708 |
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To clarify the nature of the 1D superconductivity, we calculate the band dispersions of Pr247 by using the generalized gradient approximation (GGA). It indicates that Fermi surface of CuO double chains is well described to the electronic structure of a quasi-1D system. Assuming the zigzag Hubbard chain model to be an effective model of the system, we derive tight binding parameters of the model from a fit to the result of GGA. Based on the Tomonaga--Luttinger liquid theory, we estimate transition temperature ($T_{\text{c}}$) of the quasi-1D zigzag Hubbard model from the calculated value of the Luttinger liquid parameter $K_{\rho}$. 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To clarify the nature of the 1D superconductivity, we calculate the band dispersions of Pr247 by using the generalized gradient approximation (GGA). It indicates that Fermi surface of CuO double chains is well described to the electronic structure of a quasi-1D system. Assuming the zigzag Hubbard chain model to be an effective model of the system, we derive tight binding parameters of the model from a fit to the result of GGA. Based on the Tomonaga--Luttinger liquid theory, we estimate transition temperature ($T_{\text{c}}$) of the quasi-1D zigzag Hubbard model from the calculated value of the Luttinger liquid parameter $K_{\rho}$. 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To clarify the nature of the 1D superconductivity, we calculate the band dispersions of Pr247 by using the generalized gradient approximation (GGA). It indicates that Fermi surface of CuO double chains is well described to the electronic structure of a quasi-1D system. Assuming the zigzag Hubbard chain model to be an effective model of the system, we derive tight binding parameters of the model from a fit to the result of GGA. Based on the Tomonaga--Luttinger liquid theory, we estimate transition temperature ($T_{\text{c}}$) of the quasi-1D zigzag Hubbard model from the calculated value of the Luttinger liquid parameter $K_{\rho}$. The result of $T_{\text{c}}$ is consistent with that of experiments in Pr247 and it suggests that the mechanism of the superconductivity is well understood within the concept of the Tomonaga--Luttinger liquid.</abstract><cop>Tokyo</cop><pub>The Physical Society of Japan</pub><doi>10.1143/JPSJ.80.024708</doi><oa>free_for_read</oa></addata></record> |
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subjects | Condensed matter: electronic structure, electrical, magnetic, and optical properties Electronic structure Exact sciences and technology Physics Properties of type I and type II superconductors Superconductivity |
title | Electronic States and Superconducting Transition Temperature Based on the Tomonaga--Luttinger Liquid in Pr2Ba4Cu7O15-\delta |
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