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Theory of Seebeck Coefficient in Multi-Walled Carbon Nanotubes
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作者 Shigeji Fujita James McNabb III Akira Suzuki 《Journal of Modern Physics》 2013年第5期628-637,共10页
Based on the idea that different temperatures generate different conduction electron densities and the resulting carrier diffusion generates the thermal electromotive force (emf), a new formula for the Seebeck coeffic... Based on the idea that different temperatures generate different conduction electron densities and the resulting carrier diffusion generates the thermal electromotive force (emf), a new formula for the Seebeck coefficient (thermopower) S is obtained: S=(2/3)ln2(qn)-1εFkBD0, where kB is the Boltzmann constant, and q, n, εF, D0 are charge, carrier density, Fermi energy, density of states at εF, respectively. Ohmic and Seebeck currents are fundamentally different in nature, and hence, cause significantly different behaviors. For example, the Seebeck coefficient S in copper (Cu) is positive, while the Hall coefficient is negative. In general, the Einstein relation between the conductivity and the diffusion coefficient does not hold for a multicarrier metal. Multi-walled carbon nanotubes are superconductors. The Seebeck coefficient S is shown to be proportional to the temperature T above the superconducting temperature Tc based on the model of Cooper pairs as carriers. The S follows a temperature behavior, , where Tg ’= constant, at the lowest temperatures. 展开更多
关键词 thermoelectric power (Seebeck Coefficient) Multi-Walled Carbon NANOTUBES The model of COOPER pairS
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Bi_(2-x)Pb_xSr_2CaCu_2O_(8+δ)的温差电势率理论分析 被引量:1
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作者 杨晓强 章立源 《北京大学学报(自然科学版)》 CAS CSCD 北大核心 1997年第1期49-52,共4页
以局域对温差电势率的理论分析Bi2-xPbxSr2CaCu2O8+δ正常态的温差电势率。结果表明此理论与实验一致。指出高温超导系统作为双成分系统(近局域化的负U中心子系统和巡游载流子子系统),随温度下降出现了退局域化... 以局域对温差电势率的理论分析Bi2-xPbxSr2CaCu2O8+δ正常态的温差电势率。结果表明此理论与实验一致。指出高温超导系统作为双成分系统(近局域化的负U中心子系统和巡游载流子子系统),随温度下降出现了退局域化过程。 展开更多
关键词 温差电势率 高TC 超导体 BPSCCO 铋系
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