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Concept of Mismatch and Relaxation Derived From Conductivity Spectra of Solid Electrolytes

机译:由固体电解质的电导谱得出的失配和弛豫的概念

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Crystalline ion conductors like RbAg_4I_5 and others display a characteristic shape of their discpersive conductivities at frequencies below the microwave regime. As the temperature is decreased, the onset ofthe dispersion is shifted to lower frequencies and thus the characteristic shape of the dispersion becomes visible in an increasingly broad frequency range. In a log-log plot of the frequnecy-dependent ocnductivity, the slope is found to increae continuously, but not to surpass unity. For the first time, this behaviour is now consistently explained. The particular shape of the dispersion is shown to be equivalent ot a proportionality fo the rates of relaxation via the single-and many-particle routes. This is the essence of the concept of mismatch and relaxation. Model conductivity spectra based on the CMR include the UDR as well as the NCL behavior. BOth universalities are thus traced back to a common dynamic origin.
机译:结晶离子导体(如RbAg_4I_5等)在低于微波范围的频率下显示其分散电导率的特征形状。随着温度降低,分散体的开始转移到较低的频率,因此分散体的特征形状在越来越宽的频率范围内变得可见。在与频率相关的导电性的对数对数图中,发现斜率不断增加,但没有超过单位。现在,第一次一致地解释了这种行为。分散体的特定形状显示为与通过单粒子和多粒子途径的弛豫速率成比例。这是不匹配和松弛概念的本质。基于CMR的模型电导率谱包括UDR和NCL行为。因此,这两个普遍性都可以追溯到一个共同的动态起源。

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