首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Radiation forces on an absorbing micrometer-sized sphere in an evanescent field
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Radiation forces on an absorbing micrometer-sized sphere in an evanescent field

机译:van逝场中吸收微米级球体上的辐射力

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The vertical radiation force on an absorbing micrometer-sized dielectric sphere situated in an evanescent field is calculated by use of electromagnetic wave theory. The present study is a continuation of an earlier paper [J. Opt. Soc. Am. B 12, 2429 (1995)] in which both the horizontal and the vertical radiation forces were calculated with the constraint that the sphere was nonabsorbing. Whereas the horizontal force can be well accounted for within this constraint, there is no possibility of describing the repulsiveness of the vertical force that was so distinctly demonstrated in the Kawata-Sugiura experiment [Opt. Lett. 17, 772 (1992)] unless a departure from the theory of pure nondispersive dielectrics is made in some way. Introduction of absorption, i.e., of a complex refractive index, is one natural way to generalize the previous theory. We work out general expressions for the vertical force for this case and illustrate the calculations by numerical computations. It turns out that, when it is applied to the Kawata-Sugiura case, the repulsive radiation force caused by absorption is not strong enough to account for the actual lifting of the polystyrene latex or glass spheres. The physical reason for the experimental outcome is, in this case, most probably the presence of surfactants, which make the surfaces of the spheres partially conducting. (C) 2003 Optical Society of America. [References: 21]
机译:利用电磁波理论计算位于van逝场中的吸收性微米级介电球上的垂直辐射力。本研究是先前论文的延续[J.选择。 Soc。上午。 [B 12,2429(1995)],其中水平和垂直辐射力都是在球体不吸收的约束下计算的。尽管可以在此约束范围内很好地说明水平力,但无法描述川田-浦实验中如此明显证明的垂直力的排斥力。来吧[J.Biol.Phys.17,772(1992)],除非以某种方式背离了纯非分散电介质的理论。引入吸收,即具有复杂折射率的吸收,是推广先前理论的自然方法。我们计算出这种情况下垂直力的一般表达式,并通过数值计算来说明计算。事实证明,当将其应用于川田Su浦的情况时,由吸收引起的排斥辐射力不足以说明聚苯乙烯胶乳或玻璃球的实际举升。在这种情况下,导致实验结果的物理原因很可能是表面活性剂的存在,这使球体的表面部分导电。 (C)2003年美国眼镜学会。 [参考:21]

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