Faculty of Physics, Kharazmi University, Tehran 15815-3587, Iran.
Soft Matter. 2019 Mar 6;15(10):2216-2222. doi: 10.1039/c8sm02328j.
We analyze the transverse intersubstrate Casimir-like force, arising as a result of thermal fluctuations of the liquid crystalline layers of a smectic-A film confined between two planar substrates in a bookshelf geometry, in which the equidistant smectic layers are placed perpendicular to the bounding surfaces. We discuss the variation of the interaction force as a function of the intersubstrate separation in the presence of surface anchoring to the substrates, showing that the force induced by confined fluctuations is attractive and depends on the penetration length as well as the layer spacing. The strongest effect occurs for tightly confined fluctuations, in which the surface anchoring energy is set to infinity, where the force per area scales linearly with the thermal energy and inversely with the fourth power of the intersubstrate separation. By reducing the strength of the surface anchoring energy, the force first becomes weaker in magnitude but then increases in magnitude as the surface anchoring strength is further reduced down to zero, in which case the force tends to that obtained in the limit of strong anchoring.
我们分析了由于热波动引起的横向亚基质卡西米尔样力,这种力出现在由两个平行基底限制的 smectic-A 薄膜的液晶层之间,其中等距的 smectic 层垂直于边界表面。我们讨论了在基底表面锚定存在的情况下,相互作用随亚基质分离的变化,表明受约束波动引起的力是吸引力,并且取决于穿透长度和层间距。对于紧密约束的波动,表面锚定能量设置为无穷大,此时每单位面积的力与热能呈线性关系,与亚基质分离的四次方成反比,这种情况的效果最强。通过降低表面锚定能量的强度,力首先会减小,但随后会随着表面锚定强度进一步减小到零而增大,在这种情况下,力趋于在强锚定的极限下获得的值。