A series of anomalous features of the Shubnikov-de Haas effect in n-type Hgl-,Mn,Te mixed crystals is detected, e.g., strong temperature dependence of the ShdH peak positions, large values of electronic g-factors, non-monotonic behaviour of the amplitude of ShdH oscillations aa a function of temperature. These features cannot be explained with the help of usual theoretical models. They are explained within the modified Pidgeon-Brown model including the exchange interaction between conduction electrons and electrons from 3d shell of Mn ions. The quantum oscillations of the thermoelectric power are also observed. The behaviour of amplitude and peak positions of thermoelectric power are compatible with those of magnetoresistance.Eine Reihe von imomalen Merkmalen des Shubnikov-de Raas-Effekts in n-leitenden Hgl -,MnzTe-Mischkristallen wird gefunden, z. B. eine starke Temperaturabbhiingigkeit der Lage des ShdH-Maximums, groDe Werte dee elektronischen g-Baktors, nichtmonotones Verhalten der Amplitude der ShdH-Oszillationen als Funktion der Temperatur. Diese Merkmale lassen sich nicht mit den iiblichen theoretischen Modellen erkliiren. Sie werden mit dem modifizierten PidgeonBrown-Mode11 erkliirt, wobei Austauschwechselwirkung zwischen Leitungselektronen und Elektronen aus der 3d-Schale der Mn-Ionen beriicksichtigt wird. Quantenoszillationen der Thermospannung werden ebenfalls beobachtet. Das Verhalten der Amplitude und der Lagen des Maximums der Thermospannung sind mit denen der MagnetowiderstandeLnderungen vereinbar.
Far-infrared (FIR} magnetotransmission experiments were carried out at 4.2 K on high-purity HgSe crystals, with the use of a CO2-pumped FIR laser and magnetic fields up to 14 T. Measurements were performed in the Voigt geometry, at three FIR wavelengths: 96.5, 119, and 163 p, m. In addition to the usual plasma-shifted cyclotron resonance occurring in the transverse Voigt geometry, we have observed electric-dipole-excited electron-spin-resonance (EDE-ESR} and combined-resonance transitions. These resonances are made possible by the relaxation of selection rules due to spin-orbit coupling, as a consequence of k p interaction and/or inversion asymmetry. Our data suggest that the inversion-asymmetry mechanism is stronger in HgSe than in other materials studied by FIR magnetotransmission, e.g., InSb, %e have also observed a small but unambiguous magnetoplasma shift in EDE-ESR occurring in the transverse Voigt geometry. The positions of the observed resonances at the three laser frequencies were used to obtain band-structure parameters for HgSe within the framework of the Pidgeon-Brown model.
bei Temperaturen von 2 bis 25 K durchgefuhrt. Aus der Temperaturabhlingigkeit der Amplitude der SdHOszillationen werden die effektiven Massen der Elektronen bestimmt. Die Werte werden mit einem Model1 analysiert, das zur Erkllirung der Anomalien entwickelt wurde, die schon friiher fur den SdH-Effekt in diesem Material beobachtet wurden.
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