2001Acta Physica SinicaRequires access

STUDY ON THE THERMOPOWER AND RESISTIVITY OF A NEW SUPERCONDUCTOR MgB_2

Yang Hong

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Abstract

The temperature\|dependent thermopower and resistivity of MgB\-2 were measured.In the range of 100—300K, the thermopower presents positive nearly linear temperature dependence,indicating that the charge carrier is hole and it is consistent with the energy band pattern.In contrast,the resistivity follows T \+2 relationship in the same temperature range.Below 100K,thermopower and resistivity change their temperature dependence.The thermopower presents a hump between the superconducting transition temperature T \-c (zero resistance,36.6K) and 100K.It has the characteristic of the phonon drag,indicating the strong electron\|phonon interaction.Some important parameters are estimated according to experimental results,such as Fermi energy E \-F and energy band width.

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The temperature\|dependent thermopower and resistivity of MgB\-2 were measured.In the range of 100—300K, the thermopower presents positive nearly linear temperature dependence,indicating that the charge carrier is hole and it is consistent with the energy band pattern.In contrast,the resistivity follows T \+2 relationship in the same temperature range.Below 100K,thermopower and resistivity change their temperature dependence.The thermopower presents a hump between the superconducting transition temperature T \-c (zero resistance,36.6K) and 100K.It has the characteristic of the phonon drag,indicating the strong electron\|phonon interaction.Some important parameters are estimated according to experimental results,such as Fermi energy E \-F and energy band width.

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Available abstract

The temperature\|dependent thermopower and resistivity of MgB\-2 were measured.In the range of 100—300K, the thermopower presents positive nearly linear temperature dependence,indicating that the charge carrier is hole and it is consistent with the energy band pattern.In contrast,the resistivity follows T \+2 relationship in the same temperature range.Below 100K,thermopower and resistivity change their temperature dependence.The thermopower presents a hump between the superconducting transition temperature T \-c (zero resistance,36.6K) and 100K.It has the characteristic of the phonon drag,indicating the strong electron\|phonon interaction.Some important parameters are estimated according to experimental results,such as Fermi energy E \-F and energy band width.

Key concepts: Seebeck coefficient, Condensed matter physics, Phonon drag, Electrical resistivity and conductivity, Superconductivity, Materials science, Atmospheric temperature range, Physics

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