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A THREE DIMENSIONAL SIMULATION MODEL FOR LIQUID PHASE ELECTROEPITAXY UNDER MAGNETIC FIELD

机译:磁场作用下液相电表皮的三维模拟模型

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A three-dimensional numerical simulation for the Liquid Phase Electroepitaxial (LPEE) growth of GaAs under a vertical stationary magnetic field was carried out. The effect of magnetic field intensity on the flow field in the liquid solution was investigated. Numerical results show that the flow patterns exhibit three distinct stability characteristics: a stable flow field up to a magnetic field level of Ha = 150, a transitional flow between Ha = 150 and Ha = 220, and an unstable flow above Ha = 220. In the stable region, the applied magnetic field suppresses the flow field, and the flow intensity decreases with increasing magnetic field. In the transitional region, the flow intensity increases dramatically with increase in the magnetic field strength. The flow patterns are significantly different from those in the stable region. The flow field is no longer axisymmetric but still stable. In the unstable region, the flow structure and intensity change with time. Under a strong magnetic field, the flow cells are confined to the vicinity of the vertical wall and exhibit significant non-uniformity near the growth interface. Such strong flow fluctuations and non-uniformities near the growth interface may have an adverse effect on the growth process and lead to an unsatisfactory growth.
机译:对GaAs在垂直固定磁场下的液相电外延(LPEE)生长进行了三维数值模拟。研究了磁场强度对液体溶液流场的影响。数值结果表明,流型表现出三个明显的稳定性特征:磁场强度高达Ha = 150的稳定流场,Ha = 150和Ha = 220之间的过渡流以及Ha = 220以上的不稳定流。在稳定区域,施加的磁场会抑制流场,并且流场强度会随着磁场的增加而降低。在过渡区域中,流动强度随着磁场强度的增加而急剧增加。流动模式与稳定区域的流动模式显着不同。流场不再是轴对称的,而是仍然稳定的。在不稳定区域,流动结构和强度随时间变化。在强磁场下,流通池被限制在垂直壁附近,并在生长界面附近显示出明显的不均匀性。生长界面附近的这种强烈的流量波动和不均匀性可能会对生长过程产生不利影响,并导致生长不令人满意。

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