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Spin-Dependent Electron Tunneling in ZnSe/Zn_(1-x)Mn_xSe Heterostructures with Double δ-Potentials
摘    要:Using the matrix method, spin-dependent tunneling properties such as barrier transparency, the degree of resonance polarization, and tunneling lifetime of electrons are examined in the non-magnetic/diluted magnetic semiconductor heterostructure. The effects of the double δ-potential and the magnetic field are discussed on the transport properties of the electrons. The introduction of double δ-potential shifts the resonance peak of polarization to the higher energy value. Both height and position of the δ-potential influence the degree of resonance polarization in the considered heterostructure. The increasing magnetic field enhances the spin-polarization.

收稿时间:2018-08-10

Spin-Dependent Electron Tunneling in ZnSe/Zn1-xMnxSe Heterostructures with Double δ-Potentials
L.Bruno Chandrasekar,M.Karunakaran,K.Gnanasekar. Spin-Dependent Electron Tunneling in ZnSe/Zn1-xMnxSe Heterostructures with Double δ-Potentials[J]. Communications in Theoretical Physics, 2019, 71(3): 339-343
Authors:L.Bruno Chandrasekar  M.Karunakaran  K.Gnanasekar
Affiliation:1. Department of Physics, The American College, Madurai 625002, India;2. Department of Physics, Alagappa Govt. Arts College, Karaikudi 630003, India
Abstract:Using the matrix method, spin-dependent tunneling properties such as barrier transparency, the degree of resonance polarization, and tunneling lifetime of electrons are examined in the non-magnetic/diluted magnetic semiconductor heterostructure. The effects of the double δ-potential and the magnetic field are discussed on the transport properties of the electrons. The introduction of double δ-potential shifts the resonance peak of polarization to the higher energy value. Both height and position of the δ-potential influence the degree of resonance polarization in the considered heterostructure. The increasing magnetic field enhances the spin-polarization.
Keywords:matrix method  heterostructure  δ-potential  
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