Low-temperature effects of resonance electronic states at transition-element impurities in the kinetic, magnetic, and acoustic properties of semiconductors

Physics

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Ii-Vi Semiconductors, Acoustical Properties Of Solids, Heat Capacity, Nonelectronic Thermal Conduction And Heat-Pulse Propagation In Solids, Thermal Waves, Saturation Moments And Magnetic Susceptibilities, Magnetic Impurity Interactions

Scientific paper

New research results on phenomena due to the existence of electronic resonance energy levels and hybridized states at impurities of transition elements in semiconductors are presented. The data show that the thermal conductivity and ultrasonic parameters of mercury selenide containing iron impurities have resonance anomalies due to the influence of these impurities. A consistent and detailed interpretation is offered for the set of observed effects of hybridized states in mercury selenide with iron impurities. The proposed interpretation of the data obtained on other systems is discussed.

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