Jian-Hui Yuan
Guangxi Medical University
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Publication
Featured researches published by Jian-Hui Yuan.
Philosophical Magazine | 2018
Li-Li Wang; Ni Chen; Song Bin; Yun-Hai Mo; Lian-Lian Ma; Guang-Lin He; Zhi-Hai Zhang; Jian-Hui Yuan
Abstract The energy levels and binding energies of a hydrogenic impurity in GaAs spherical quantum dots with radius R are calculated by the finite difference method. The system is assumed to have an infinite confining potential well with radius R, which can be viewed as a hard wall boundary condition. The parabolicity of the conduction band profile for GaAs material can be viewed as a parabolic potential well. The energy levels and binding energies are depended dramatically on the radius of the quantum dot and the parabolic potential well. The results show that parabolic potential can remarkably alter the energy level ordering and binding energy level ordering of hydrogenic impurity states for the quantum dot with a smaller radius R.
Chinese Physics Letters | 2016
Jian-Hui Yuan; Ni Chen; Hua Mo; Yan Zhang; Zhi-Hai Zhang
We investigate the tunneling magnetoresistance via δ doping in a graphene-based magnetic tunnel junction in detail. It is found that the transmission probability and the conductance oscillates with the position and the aptitude of the δ doping. Also, both the transmission probability and the conductance at the parallel configuration are suppressed by the magnetic field more obviously than that at the antiparallel configuration, which implies a large negative magnetoresistance for this device. The results show that the negative magnetoresistance of over 300% at B = 1.0 T is observed by choosing suitable doped parameters, and the temperature plays an important role in the magnetoresistance. Thus it is possible to open a way to effectively manipulate the magnetoresistance devices, and to make a type of magnetoresistance device by controlling the structural parameter of the δ doping.
Materials | 2018
Zhi-Hai Zhang; Jian-Hui Yuan; Kangxian Guo
Studies aimed at understanding the nonlinear optical (NLO) properties of GaAs/Ga0.7Al0.3As morse quantum well (QW) have focused on the intersubband optical absorption coefficients (OACs) and refractive index changes (RICs). These studies have taken two complimentary approaches: (1) The compact-density-matrix approach and iterative method have been used to obtain the expressions of OACs and RICs in morse QW. (2) Finite difference techniques have been used to obtain energy eigenvalues and their corresponding eigenfunctions of GaAs/Ga0.7Al0.3As morse QW under an applied magnetic field, hydrostatic pressure, and temperature. Our results show that the hydrostatic pressure and magnetic field have a significant influence on the position and the magnitude of the resonant peaks of the nonlinear OACs and RICs. Simultaneously, a saturation case is observed on the total absorption spectrum, which is modulated by the hydrostatic pressure and magnetic field. Physical reasons have been analyzed in depth.
Superlattices and Microstructures | 2015
Zhi-Hai Zhang; LiLi Zou; Chenglin Liu; Jian-Hui Yuan
Superlattices and Microstructures | 2014
Jian-Hui Yuan; Yan Zhang; Meng Li; Zhi-Hui Wu; Hua Mo
Physica E-low-dimensional Systems & Nanostructures | 2015
Jian-Hui Yuan; Yan Zhang; Xinxia Guo; Jinjin Zhang; Hua Mo
Optical Materials | 2016
Xin Liu; LiLi Zou; Chenglin Liu; Zhi-Hai Zhang; Jian-Hui Yuan
Superlattices and Microstructures | 2016
Zhi-Hai Zhang; Guoce Zhuang; Kangxian Guo; Jian-Hui Yuan
Superlattices and Microstructures | 2016
Jian-Hui Yuan; Ni Chen; Zhi-Hai Zhang; Jing Su; Sufang Zhou; Xiaoling Lu; Yongxiang Zhao
Physica E-low-dimensional Systems & Nanostructures | 2016
Jian-Hui Yuan; Ni Chen; Yan Zhang; Hua Mo; Zhi-Hai Zhang