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首页> 外文期刊>Physica, B. Condensed Matter >Tuning the dynamics of Bound Magnetic Polaron in asymmetric Cd1-x1Mnx1Te/Cd1-x2Mnx2Te Semimagnetic Concentric Double Quantum Rings: Through magnetic ion concentration and magnetic field
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Tuning the dynamics of Bound Magnetic Polaron in asymmetric Cd1-x1Mnx1Te/Cd1-x2Mnx2Te Semimagnetic Concentric Double Quantum Rings: Through magnetic ion concentration and magnetic field

机译:在不对称CD1-X1MNX1TE / CD1-X2MNX2TE半磁同心双量子环中调整绑定磁极化的动态:通过磁离子浓度和磁场

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Rigorous analysis on the formation of Bound Magnetic Polaron (BMP) in Cd1-x1Mnx1Te/Cd1-x2Mnx2Te Semi -magnetic Concentric Double Quantum Ring (SCDQR) for various magnetic field and ring dimensions has been made by estimating Spin Polaronic Shift (SPS) using variational technique. The concentration of Mn2+ has been varied in both the ring and barrier material to estimate the shift in the BMP formation from the inner ring to outer ring with respect to the distribution of Mn2+ ions and impurity location. It is found that the SPS of Inner Ring Centered Donor (IRD) and Outer Ring Centered Donor (ORD) are opposite to each other at lower concentrations. Strengthening the magnetic field and increasing the concentration of magnetic ions increases the SPS because of the large magnetic ordering. Thus the concentration of magnetic ions and magnetic field is of paramount importance in determining the BMP formation and its usage in devices.
机译:通过变分技术估算自旋极化子位移(SPS),对不同磁场和环尺寸下Cd1-x1Mnx1Te/Cd1-x2Mnx2Te半磁性同心双量子环(SCDQR)中束缚磁极化子(BMP)的形成进行了严格分析。环和势垒材料中的Mn2+浓度都发生了变化,以估计BMP形成从内环到外环的转移,从而确定Mn2+离子的分布和杂质位置。结果发现,在较低浓度下,内环中心供体(IRD)和外环中心供体(ORD)的SP相对。加强磁场和增加磁离子浓度,由于磁有序性大,提高了SPS。因此,在确定BMP的形成及其在器件中的使用时,磁离子和磁场的浓度至关重要。

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