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The electronic thermal transport in the EuBa2Cu3Oy superconductor

机译:EuBa2Cu3Oy超导体中的电子热传输

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The heat transport properties in the normal state of a high quality EuBa2Cu3Oy single crystal in two oxygen configurations were studied. Measurements of the longitudinal and transverse transport coefficients were performed for an optimally doped sample (y approximate to 7), then the oxygen content in the material was reduced to y approximate to 6.65, and the set of measurements was repeated. The object of investigations was still literally the same crystal. We found the Hall-Lorenz numbers (L-xy) for both. specimens behave almost identical in a temperature range 300-160 K, i.e. L-xy's depend weakly on temperature and are about two times larger than the Sommerfeld's value of the Lorenz number (L-0). Below T approximate to 160 K the Hall-Lorenz number for the optimally doped sample slowly drops, while the value of L-xy for the oxygen reduced sample begins to rise. A phenomenological model of the electronic structure containing a pseudo-gap was proposed to explain the observed behaviors. The determined temperature dependences of the Lorenz number have been used to separate the total thermal conductivities for electronic and phonon parts and some conclusions about the scattering mechanisms are withdrawn. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了两种氧构型下高质量EuBa2Cu3Oy单晶在正常状态下的传热性能。对最佳掺杂的样品(y约为7)进行纵向和横向传输系数的测量,然后将材料中的氧含量降低至y约为6.65,并重复该组测量。调查的对象实际上仍然是同一块水晶。我们找到了两者的霍尔洛伦兹数(L-xy)。在300-160 K的温度范围内,样品的性能几乎相同,即L-xy对温度的依赖性很弱,并且比Lorenz数(L-0)的Sommerfeld值大两倍左右。低于T约160 K,最佳掺杂样品的Hall-Lorenz数缓慢下降,而氧还原样品的L-xy值开始上升。提出了包含伪间隙的电子结构的现象学模型来解释观察到的行为。所确定的洛伦兹数的温度依赖性已被用于分离电子和声子部件的总热导率,并且得出了有关散射机理的一些结论。 (c)2005 Elsevier B.V.保留所有权利。

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