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Ferromagnetic states of p-type silicon doped with Mn

Ziyodbek A. YunusovQuantum-functional Semiconductor Research Center, Dongguk University, Seoul, 100-715, KoreaSh. U. YuldashevQuantum-functional Semiconductor Research Center, Dongguk University, Seoul, 100-715, KoreaKh. T. IgamberdievQuantum-functional Semiconductor Research Center, Dongguk University, Seoul, 100-715, KoreaYongchai KwonQuantum-functional Semiconductor Research Center, Dongguk University, Seoul, 100-715, KoreaTae Won KangQuantum-functional Semiconductor Research Center, Dongguk University, Seoul, 100-715, KoreaМ. К. БахадырхановTashkent State Technical University, Tashkent, 100095, UzbekistanС. Б. ИсамовTashkent State Technical University, Tashkent, 100095, UzbekistanН. Ф. ЗикриллаевTashkent State Technical University, Tashkent, 100095, Uzbekistan
ABI

Аннотация

In this work, the ferromagnetic states of Mn-doped p-type silicon samples were investigated. Two different types of ferromagnetic states have been observed in Si (Mn, B). The samples with a relatively high concentration of Mn revealed a ferromagnetic state with a Curie temperature above room temperature, and that ferromagnetism was due to the Mn x B y ferromagnetic clusters. The samples with a moderate concentration of Mn at low temperatures revealed a ferromagnetic state that was mediated by carriers (holes). The samples demonstrated the anomalous Hall effect at temperatures below 100 K and had a negative magneto-resistivity peak at a temperature close to the Curie temperature. The thermal diffusivity measurements demonstrated the existence of a second-order phase transition in the samples with a moderate Mn concentration. The specific heat’s critical exponent α = 0.5, determined from the thermal diffusivity measurements, confirmed the long-range nature of the magnetic exchange interaction in these samples.

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