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首页> 外文期刊>Physics of the solid state >Mechanisms of modification of the energy spectrum in high-temperature superconductors of the bismuth, thallium, and mercury systems upon doping and increase in the number of copper-oxygen layers
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Mechanisms of modification of the energy spectrum in high-temperature superconductors of the bismuth, thallium, and mercury systems upon doping and increase in the number of copper-oxygen layers

机译:掺杂,铜-氧层数增加时,铋,th和汞系统高温超导体能谱的改变机理

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This paper reports on the results of a comparative investigation of the specific features of the electron transport and superconducting properties in chain-free high-temperature superconductors of the bismuth, thallium, and mercury systems with different levels and types of doping, as well as with different numbers of copper-oxygen layers. It has been shown that the asymmetric narrow band model provides a means for adequately describing the available data on temperature dependences of the thermopower coefficient for all the studied systems, which has proved the possibility of applying this model as a universal method for describing and analyzing the specific features of the electron transport in high-temperature superconductors of different systems. The parameters of the energy spectrum and the system of charge carriers in the normal phase have been determined, and the general regularities in the transformation of the energy spectrum due to the doping and an increase in the number of copper-oxygen layers in different systems have been revealed. The conclusions have been drawn about the character and mechanisms of influence of the parameters of the energy spectrum in the normal state on the superconducting properties of chain-free high-temperature superconductors in the optimally doped and underdoped regimes. It has been demonstrated that, in the underdoped regime, regardless of the type of doping, the dependence of the critical temperature on the effective width of the conduction band has a close-to-universal character in all the studied systems for each of the phases with different numbers of copper-oxygen layers.
机译:本文报告了对铋,th和汞的无链高温超导体中不同掺杂水平和掺杂类型的电子传输和超导性能的特定特征进行比较研究的结果。不同数量的铜氧层。结果表明,非对称窄带模型提供了一种手段,可以充分描述所有研究系统对热电系数的温度依赖性的可用数据,这证明了将该模型用作描述和分析热电偶的通用方法的可能性。不同系统的高温超导体中电子传输的特定特征。确定了正相中的能谱和载流子系统的参数,并且由于掺杂和不同系统中铜-氧层数的增加而引起的能谱转换的一般规律具有被揭示。得出结论:在最佳掺杂和欠掺杂状态下,正常状态下能谱参数对无链高温超导体超导性能的影响特征和影响机理。已经证明,在掺杂不足的情况下,无论掺杂的类型如何,临界温度对导带有效宽度的依赖性在所有研究的系统中每个相都具有接近于普遍的特性。具有不同数量的铜氧层。

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