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Correlation of Hall and Shubnikov-de Haas Oscillations and Impurity States in Sn- and I-Doped Single Crystals p-Bi_2Te_3

机译:HALL和Shubnikov-de HAAS振荡和杂质状态在SN和I掺杂单晶中的相关性P-BI_2TE_3

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摘要

Oscillations of the Hall coefficient and Shubnikov-de Haas (SdH) were observed in p-Bi_2Te_3 crystals doped with Sn (acceptor) and with I (donor) in magnetic fields up to 9 T parallel to the C3 trigonal axis at low temperatures (2 K < T < 20K), which is an evidence of the spatial homogeneity of carriers in complex solid solutions. This supports the existence of a narrow band of Sn states (partially filled) against the background of the valence band acting as a reservoir with high density of states partially filled with electrons. Previously, in these systems in which the Fermi level was in the light-hole valence band, both large Hall and SdH oscillations were observed, with ~π phase shift between them, whereas when the Fermi level was in the heavy-hole valence band (larger acceptor content), no quantum oscillations were observed. It was concluded that the observed low amplitude quantum oscillations may be attributed to the shifting of the reservoir from the light-hole band to the heavy-hole, and the observed phase shift in the range 0 - π/2 between Hall and SdH oscillations may be attributed to filling factor of the reservoir with electrons, which varies with I content. Experimental results along with theoretical explanation of these correlations are presented.
机译:在掺杂有Sn(受体)的P-Bi_2Te_3晶体中观察霍尔系数和Shubnikov-de Haas(SDH)的振荡,在低温下与C3三角轴平行于C3三角轴的磁场中的磁场中的磁场(2 K

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