Using the method of force-correlation functions the electrical resistivity is calculated for the anharmonic model of high-T, superconductors with structurally unstable lattices. This model contains the interaction between electrons and strong anharmonic ion vibrations. The influence of this interaction on the temperature dependence of the electrical resistivity in the normal conducting phase is discussed in the case of weak scattering. The results are compared with experimental and theoretical investigations on Y-Ba-Cu-0 compounds.
Ausgehend von der Methode der
Starting from a resistivity formula the electrical resistivity of substitutional alloys with partial long-and short-range orders is calculated. Restrictions for the distance dependence of the Cowley short-range order parameters are derived. In the weak scattering limit the resistivity contributions caused by precipitations and AB ordering effects are discussed.Ausgehend von einer Widerstandsformel wird der elektrische Widerstand von Substitutionslegierungen mit partieller Nah-und Fernordnung berechnet. Einschrankungen fur die Abstandsabhangigkeit der Cowleyschen Nahordnungsparameter werden abgeleitet. Die von Ausscheidungen und AB-Ordnungseffekten erzeugten Widerstandsbeitrage werden in der Naherung der schwachen Streuung berechnet und diskutiert.
The temperature dependence of the thermoelectric power of strongly disordered alloys is studied describing phonons in alloys by a modified Chen-Weisz-Sher model. Within this model the thermopower can be calculated by means of Mott's formula. For the treatment of the disorder problem the coherent potential approximation is used. Numerical results are discussed for different values of alloy concentration, number of electrons, and degree of chemical disorder with respect t o experimental observations. The mixing of chemical and thermal disorder can cause strong deviations from the linear temperature variation of the thermopower.Die Temperaturabhangigkeit der Thermokraft wird fiir stark ungeordnete Legierungen untersucht, wobei eine modifizierte Version des Modells von Chen, Weisz und Sher zur Beschreibung der Phononen in der Legierung benutzt wird. I m Rahmen dieses Modells wird die Thermokraft mit Hilfe der Mott-Forms1 berechnet. F u r verschiedene Werte der Legierungskonzentration, der Zahl der Elektronen und der SGrke der chemischen Unordnung werden numerische Resultate fur die Temperaturabhiingigkeit der Thermokraft erhalten und beziiglich experimenteller Aussagen diskutiert. Die Mischung von chemischer und thermischer Unordnung fiihrt zu starken Abweichungen von der linearen Temperaturabhangigkeit der Thermokraft.
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