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Comparative theoretical analysis between parallel and perpendicular geometries for 2D particle patterning in photovoltaic ferroelectric substrates

机译:光伏铁电基板中二维粒子图案的平行和垂直几何之间的比较理论分析

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This paper describes the dielectrophoretic potential created by the evanescent electric field acting on a particle near a photovoltaic crystalsurface depending on the crystal cut. This electric field is obtained from the steady state solution of the Kukhtarev equations for thephotovoltaic effect, where the diffusion term has been disregarded. First, the space charge field generated by a small, square, light spotwhere d l (being d a side of the square and l the crystal thickness) is studied. The surface charge density generated in both geometriesis calculated and compared as their relation determines the different properties of the dielectrophoretic potential for both cuts. The shapeof the dielectrophoretic potential is obtained and compared for several distances to the sample. Afterwards other light patterns are studiedby the superposition of square spots, and the resulting trapping profiles are analysed. Finally the surface charge densities and trappingprofiles for different d/l relations are studied.
机译:本文描述了由瞬逝电场根据晶体切割作用于光伏晶体表面附近的粒子而产生的介电泳电势。该电场是从用于光伏效应的Kukhtarev方程的稳态解中获得的,其中不考虑扩散项。首先,研究了一个小的方形光斑所产生的空间电荷场,其中d l(位于d的边,晶体厚度为l)。计算并比较了两种几何形状中产生的表面电荷密度,因为它们的关系确定了两种切割的介电泳电位的不同特性。获得介电泳电位的形状,并将其与样品的距离进行比较。然后,通过正方形斑点的叠加来研究其他光图案,并分析所产生的俘获轮廓。最后,研究了不同d / l关系的表面电荷密度和俘获分布。

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