INFLUENCE OF MAGNETIC QUANTIZATION ON THE EFFECTIVE ELECTRON MASS IN KANE-TYPE SEMICONDUCTORS

被引:19
作者
GHATAK, KP
GHOSHAL, A
MITRA, B
机构
[1] Department of Electronics and Tele-Communication Engineering Faculty of Engineering and Technology, University of Jadavpur, Calcutta
来源
NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA D-CONDENSED MATTER ATOMIC MOLECULAR AND CHEMICAL PHYSICS FLUIDS PLASMAS BIOPHYSICS | 1991年 / 13卷 / 07期
关键词
D O I
10.1007/BF02457174
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We study the effective electron mass at the Fermi level in Kane-type semiconductors on the basis of fourth order in effective mass theory and taking into account the interactions of the conduction electrons, heavy holes, light holes and split-off holes, respectively. The results obtained are then compared to those derived on the basis of the well-known three-band Kane model. It is found, taking n-Hg1-xCd(x)Te as an example, that the effective electron mass at the Fermi level in accordance with fourth-order model depends on the Fermi energy, magnetic quantum number and the electron spin respectively due to the influence of band nonparabolicity only. The dependence of effective mass on electron spin is due to spin-orbit splitting parameter of the valence band in three-band Kane model and the Fermi energy due to band nonparabolicity in two-band Kane model. The same mass exhibits an oscillatory magnetic-field dependence for all the band models as expected since the origin of oscillations in the effective mass in nonparabolic compounds is the same as that of the Shubnikov-de Hass oscillations. In addition, the corresponding results for parabolic energy bands have been obtained from the generalized expressions under certain limiting conditions.
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页码:867 / 880
页数:14
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