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On the effects from the simultaneous occurrence of the critical Casimir and dispersion forces between conical colloid particle and a thick plate immersed in nonpolar critical fluid

机译:关于同时发生临界卡西米尔和锥形胶体颗粒与浸入非极性临界流体的厚板之间的分散力的影响

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Here we study the interplay between the van der Waals (vdWF) and critical Casimir forces (CCF), as well as the total force (TF) between a conical colloid particle and a thick planar slab. We do that using general scaling arguments and mean-field type calculations utilizing the so-called “surface integration approach”, a generalization of the well known Derjaguin approximation. Its usage in the present research, requires knowledge on the forces between two parallel slabs, confining in between some fluctuating fluid medium characterized by its temperature T and chemical potential μ . The surfaces of the colloid particle and the slab are assumed coated by thin layers exerting strong preference to the liquid phase of a simple fluid, or one of the components of a binary mixture, modeled by strong adsorbing local surface potentials, ensuring the so-called (+,+) boundary conditions. On the other hand, the core region of the slab and the particle, influence the fluid by long-ranged competing dispersion potentials. We demonstrate that for a suitable set of colloid-fluid, slab-fluid, and fluid-fluid coupling parameters the competition between the effects due to the coatings and the core regions of the objects, result, when one changes T or μ , in sign change of the Casimir force (CF) and the TF acting between the colloid and the slab. Such an effect can provide a strategy for solving problems with handling, feeding, trapping and fixing of microparts in nanotechnology.
机译:在这里,我们研究了范德华力(vdWF)与临界卡西米尔力(CCF)之间的相互作用,以及圆锥形胶体颗粒与厚厚平板之间的总力(TF)。我们使用一般的缩放参数和使用所谓的“表面积分方法”(即众所周知的Derjaguin逼近的概括)的均值场类型计算来做到这一点。在本研究中使用它需要了解两个平行板之间的力,并将其限制在以其温度T和化学势μ为特征的一些波动流体介质之间。假定胶体颗粒和平板的表面覆盖有薄层,该薄层对简单流体或二元混合物的一种组分的液相表现出强烈的偏爱,并以强烈的吸附局部表面电势为模型,从而确保了所谓的(+,+)边界条件。另一方面,平板的核心区域和颗粒会通过长程竞争性分散势来影响流体。我们证明,对于一组合适的胶体-流体,平板-流体和流体-流体耦合参数,当涂层改变或物体的核心区域时,由于涂层的变化和物体的核心区域之间的竞争,导致符号之间的竞争卡西米尔力(CF)和TF在胶体和平板之间作用的变化。这种效果可以提供解决纳米技术中微零件的处理,进料,捕获和固定问题的策略。

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